BOOKMARKS IN IRON AND STEELMAKING 

 

  • Direct Reduction Iron Ores.

  • Non Oriented Electrical

  • Environmental and Climat Change in iron and Steel Industry.

 

Ignacio Ibarrondo Mtz – Iturralde

Dr. Ing. Industrial

Formerly Catedrático E.U. (UPV/EHU) University Basque Country.

www.ironandsteelmaking.com

https://www.researchgate.net/profile/Ignacio

Ibarrondo/research

 

Note: If the bookmarks do not open directly, copy and paste them directly into your browser’s search bar.

10.05.2026

 

 

INTRODUCTION AND PURPOSE OF THIS WORK.

 

This work presents a set of BOOKMARKS IN IRON AND STEELMAKING in three aspects:

– Direct Reduction Iron Ores.

– Non-Oriented Electrical Steels.

– Environmental and Climate Change in the Iron and Steel Industry.

 

The first group of bookmarks refers to direct reduction, with particular emphasis on direct reduction through hydrogen. This represents an almost total elimination of pollutants such as carbon dioxide.

This aspect is very important since the use of hydrogen in the steel industry is fundamental for the reduction of polluting emissions, not only as a replacement for the blast furnace but also in other stages of the steel industry as well as in heat treatments, and significant work is being done on this by various steel companies and research centers, as well as at the government level.

The second group of bookmarks referred to in this study is non-oriented grain magnetic sheet. This is crucial today because the use of electric motors is expected to increase in the future, especially in transportation. Therefore, the latest advances in this area to improve the properties of this non-oriented grain magnetic sheet are essential and very important from a technical, economic, and environmental perspective.

The third aspect addressed in this work is the environmental one, and there we will place the references relating to the use of hydrogen in the steel industry, as well as on the reduction of carbon monoxide and carbon dioxide emissions, their capture and their possible use.

This work is intended for students and teachers who want to get started in these subjects, as well as people from the industrial or commercial world who are also interested in these aspects, and people in general who may be interested in these problems.

To this aim, the following are cited: bibliographic articles, books, reports, press information, reports from technical advisory and engineering firms, national and multinational companies in the steel sector, international and national public institutes, conferences and webinars, videos, courses, and journals. Emphasis is placed on the various multinational companies in the steel sector that show the latest advancements in these fields.

It is clear that a second, more comprehensive organization is necessary for a better understanding of the problems that may arise. If we add the use of artificial intelligence, we can generate valuable summaries and reports.

In general, the information provided is very valuable for all those interested in this subject.

 

INDEX

ASIDERURGIA 15 – DIRECT REDUCTION                                      pp.9

DIRECT REDUCTION 01 I.IBARRONDO                                                    pp.9

DIRECT REDUCTION 02 GENERAL                                                            pp.9

DRI 02 BIS GENERAL NEW PLANTS 20.10.2024                                    pp.11

DIRECT REDUCTION 03 Ref Biblio                                                             pp.12

DIRECT REDUCTION 03A ROTARY KILN 01.01.2019                            pp.13

DIRECT REDUCTION 04  INMETCO PROCESS                                       pp.14

DIRECT REDUCTION 05  FASTMET PROCESS                                        pp.14

DIRECT REDUCTION 06  ITmk3    PROCESS                                            pp.14

SMELTING REDUCTION 07  HISMELT PROCESS SMELTING            pp.15

SMELTING REDUCTION 08 HIsarna PROCESS                                        pp.15

SMELTING REDUCTION 09  COREX PROCESS SMELTING                  pp.16

SMELTING REDUCTION 10 SMELTING POR HIDROGENO                  pp.16

DIRECT REDUCTION 15  OTHER PROCESSES                                        pp.17

DIRECT REDUCTION 16 METSO  PROCESS                                             pp.18

DIRECT REDUCTION 17 HIBIS Group                                                         pp.19

DIRECT REDUCTION 20 DIRECT STEELMAKING PROCESSES         pp.19

DIRECT REDUCTION 25 MIDREX PROCESS                                            pp.19

DIRECT REDUCTION 25A MIDREX NEWS and  PAPERS 2019  to 2024           pp.21

DIRECT REDUCTION 25B MIDREX REDUCTION  BY H2   .2023                       pp.22

DIRECT REDUCTION 25C ARTICULOS DIRECT REDUCTION  By H2 2023    pp.24

DIRECT REDUCTION 26  HYFOR PROCESS                                               pp.26

DIRECT REDUCTION 27 PERED (IRAN)  PROCESS                                  pp.27

DIRECT REDUCTION 28 POSCO HyREX  PROCESS                                  pp.27

DIRECT REDUCTION 30  HYL PROCESS 01.01.2018                                pp.28

DIRECT REDUCTION 30A HYL ENERGIRON PROCESS                          pp.28

DIRECT REDUCT 30B HYL ENERGIRON PROCESS BY H2 1.07.2023    pp. 30

DIRECT REDUCTION 40 MULTINATIONALS and STATISTICS                pp.31

DIRECT REDUCTION 50  DR AND  SMELTING  (Videos of processes )    pp. 31

DIRECT REDUCTION 65 ARTICULOS and MODERN  TRENDS                 pp. 35

DIRECT REDUCTION 67 REDUCTION BY HYDROGEN                               pp.35

DIRECT REDUCTION 67A REDUCTION by HYDROGEN  VIDEOS           pp. 40

DIRECT REDUCTION 68 VIDEOS in GENERAL                                             pp.42

ASIDERURGIA 15A  MOLTEN METHOD OXIDE ELECTROLYSIS NEW 2025  pp.42

 

————————

ASIDERURGIA 18 – NON ORIENTED MAGNETIC STEEL SHEETS:  PHYSICAL CHEMISTRY AND METALLURGICAL BACKGROUND, MANUFACTURING PROCESSES, PROPERTIES.                         pp.44

 

CA 000 PHYSICAL, CHEMICAL, AND

METALLURGICAL FUNDAMENTALS                                                         pp. 44 

CA 001 MAGNETIC STEEL SHEET .2019                                                     pp. 44

CA 002 MANUFACTURING PROCESS 2019                                                pp. 47

CA 003 CLASIFICATION                                                                                    pp. 48

CA 004 CATEGORIES  and GRADES of N.O                                                  pp. 49

CA 005 Super E Core 2019                                                                                   pp.49         

CA 006 HIGH SILICON 6.5% OBTAINED by RAPID SOLIDIFICATION            pp.50

CA 006bis  HIGH SILICON 6.5% OBTAINED by RAPID SOLIDIFICATION      pp.51

CASTRIP PROCESS

CA 007  HIGH SILICON 6.5% OBTAINED by ROLLING                                         pp.51

CA 008 WARM COLD ROLLING                                                                                   pp.52

CA 009 MAGNETISM : BOOKS and BIBLIOGRAPHY (Papers)                             pp.52

CA 010 CHEMICAL COMPOSITION                                                                             pp.55

CA 011 GLOBAL PRODUCTIONS and NEW MILLS                                                  pp.56

CA 012 NON ORIENTED ELECTRICAL STEELS PRODUCED by CVD                pp.57

CA 013 TEXTURES                                                                                                            pp.61

CA 014  BIBLIOGRAPHY and PAPERS  01                                                                   pp.73

CA 015   BIBLIOGRAPHY and PAPERS  02  2023                                                       pp.77

CA 016   BIBLIOGRAPHY and PAPERS  03  ACADEMIC and GENERAL              pp.86

CA 017   BIBLIOGRAPHY and PAPERS  04 GENERAL                                              pp.95

CA 017A   BIBLIOGRAPHY and PAPERS  05 NEW MILLS

and DEGASSING OF ELECTRICAL STEELS                                                                 pp.97

CA 020   BIBLIOGRAPHY and PAPERS  06

ROLLING ANNEALING and MAGNETIC PROPERTIES                                            pp.101

CA 021 NON ORIENTED MAGNETIC STEEL SHEETS

IN ITS APPLICATION TO ELECTRIC CARS                                                                   pp.105

CA 022 NEW  MILLS for PRODUCTION

OF N.O. ELECTRICAL STEELS for ELECTRIC CARS                                                  pp.106

CA 022A THE FUTURE OF ELECTRICAL STEELS IN ELECTRIC CARS                pp.106

CA 023 NON ORIENTED MAGNETIC STEEL SHEETS

GRADES FROM COMPANIES                                                                                            pp.106

CA 024 PRODUCTS PRODUCTION AND MARKET                                                   pp. 107         

CA 025 ENVIRONMENTAL IMPACT, ENERGY

SAVINGS and ECONOMIC ASPECTS                                                                                pp.108

 

—————————————

 

ASIDERURGIA 19 IRON – STEELMAKING and

 ENVIRONMENTAL IMPACT                                                   pp.109

 

01   INTRODUCTION   01   2020                                                                            pp.109

02  HYDROGEN TECH WORLD  Update, News, Electrolyzers,

Magazine, Etc….                                                                                                          pp.110

02A  METHODS TO PRODUCE HYDROGEN IN ITS VARIOUS FORMS

SPECIALLY GREEN HYDROGEN 2022                                                               pp.110

03  HYDROGEN AS  RENEWABLE  ENERGY  01                                              pp.114

04    HYDROGEN PRODUCTION  PLANTS  and DECARBONIZATION,

THE USE OF HYDROGEN AS REDUCING AGENT   01                                     pp.114

 

05    INTERNATIONAL PRODUCTION  PLANTS  and DECARBONIZATION,

THE USE OF HYDROGEN AS REDUCING AGENT   02                                      pp.123

(complete course about hydrogen)                                                                              pp.123

 

06    INTERNATIONAL PRODUCTION  PLANTS  and

CARBON CAPTURE, the USE of  HYDROGEN

as  REDUCING AGENT   03  2024                                                                               pp.134

 

07    INTERNATIONAL PRODUCTION  PLANTS  and

CARBON CAPTURE,

THE USE OF HYDROGEN AS REDUCING AGENT   04  2025                             pp.143

(Green Hydrogen), (European conference)

 

08 CONFERENCES ABOUT CLIMATE CHANGE  COP                                         pp.154

(Webinar Conferences from AIST and Universities)

 

09 REDUCTION OF CO2 EMISSIONS INTO THE ATMOSPHERE                       pp.157

(ULCOS, ULCORED )

 

10.ENVIRONMENTAL INSTITUTES AND COMPANIES                                          pp.160

 

————————————-

 

 

ASIDERURGIA 15 – Direct Reduction

 

DIRECT REDUCTION 01 I.Ibarrondo

 

I.Ibarrondo Direct reduction – Buscar con Google

 

DIRECT REDUCTION 02 GENERAL

 

Techint GroupTENOVA VISION GENERAL BUENISIMO for Sustainability – Presentation_Paolo-ARGENTA-Tenova-1.pd

Materials Processing Institute DIRECT REDUCTION

Plastics Recycler Plans Facility to Make Coke Alternative  – Association for Iron & Steel Technology

TransZeroWaste | ITACA Institute

Direct reduction Institutes – Buscar con Google

Direct Reduction Iron Ores – Buscar con Google

Direct reduction – Wikipedia

186A Direct-reduced iron becomes steel decarbonization winner | S&P Global Commodity Insights

MPT-2020-06-komplett.pdf – 607d4ab210b3e74d3e7eabd0_MPT-International-AI-Startup-Ventures-Big-Step-Towards-CO2-Neutrality.pdf

184 DRI Archives NEWS – GreenSteelWorld.com

Direct Reduction Process – an overview | ScienceDirect Topics

Direct Reduced Iron Market Size, Share Report, 2032

A Review on the Modeling of Direct Reduction of Iron Oxides in Gas‐Based Shaft Furnaces – Zare Ghadi – 2023 – steel research international – Wiley Online Library

Largest DRI Plant in the World – YouTube

Steel News PORT FOR DR ESTO VA EN AUMENTO

(2) Course Introduction DIRECT REDUCTION IRON ORES – YouTube

(2) Direct reduced iron and production of DRI part 1 – YouTube

(2) Direct reduced iron and production of DRI part 2 – YouTube

World DRI Production Products || KOBE STEEL, LTD.

World DRI Production by Process Products || KOBE STEEL, LTD.

HBI Plant | AK Steel

Cleveland-Cliffs Toledo HBI Plant – Búsqueda de Google

SpringerLink – Capítulo del libro

SpringerLink – Publicación FeO Diagram

direct reduction process – Google Académico

Kinetics of direct reduction of unagglomerated iron-ore with coal char – UBC Library Open Collections

Pig Iron | International Iron Metallics Association

Hot Briquetted Iron (HBI) | International Iron Metallics Association

Direct Reduced Iron (DRI) | International Iron Metallics Association

DRI production | International Iron Metallics Association

HBI production | International Iron Metallics Association

label:iron ores Direct reduction – Google Académico

Steel News DRI SLABS TERNIUM

001A H2GS signs agreements with Rio Tinto for direct reduction iron ore pellets and hot briquet — H2 Green Steel

001B H2 Green Steel and Vale in agreement for the supply of direct reduction iron ore pellets   — H2 Green Steel

184 DRI Archives – GreenSteelWorld.com

31 (PDF) The use of DRI in a consteel® EAF process

 

DRI 02 BIS GENERAL NEW PLANTS 2024

 

Techno «V»»» – YouTube

NEMO – Industries DRI AND AI

Midrex and Primetals selected by Blastr – Midrex Technologies, Inc.

Emirates Steel Arkan going greener with Danieli ‹ Danieli

News in green DRI processing: electric process gas heaters ‹ Danieli

Tosyali, SULB to Build World's Largest DRI Complex in Libya

Turkey's Tosyalı to build the world's largest DRI production complex in Libya

Tosyalı SULB Awards CDRI Plant Order to Midrex, SMS group – Association for Iron & Steel Technology

TOSYALI SULB awards order to Midrex and SMS group for DRI complex – SMS group GmbH

TOSYALI SULB awards contract for DRI complex to Midrex and SMS Group – marketSTEEL international

SHS Group and Subsidiaries Secure EUR1.7 Billion for Power4Steel – Association for Iron & Steel Technology

Next milestone on the path to climate-neutral steel production: EUR 1.7 billion financing package for Power4Steel successfully secured

Germany’s Saarstahl and Dillinger secure €1.7 billion financing for Power4Steel green steel project – EUROMETAL

  1. S. Steel to Build DRI Plant on Big River Steel Works Campus – Association for Iron & Steel Technology

What does a DRI plant in Arkansas mean for steelmaking in the Mon Valley?

 

DIRECT REDUCTION 03 Ref Biblio

 

Amazon.es : Direct reduction Iron Ores

Hydrogen Assisted Direct Reduction of Iron Oxides (English Edition) eBook : Cavaliere, Pasquale: Amazon.es: Tienda Kindle ( Water Electrolysis for Hydrogen Production )

Sponge Iron Production By Direct Reduction Of Iron Oxide – CHATTERJEE, AMIT – Google Libros

Sponge Iron Production by Direct Reduction of Iron Oxide: Amit Chatterjee: 9788120336445: Amazon.com: Books

 

1000 Toward green steel: Modeling and environmental economic analysis of iron direct reduction with different reducing gases – ScienceDirect

 

100 (PDF) The Future of BF/BOF versus DRI/EAF Steelmaking, Keynote speech at Instituto Argentina de Siderurgia Oct 2022 Conference

 

A Review on the Modeling of Direct Reduction of Iron Oxides in Gas‐Based Shaft Furnaces – Zare Ghadi – 2023 – steel research international – Wiley Online Library

 

Iron by Direct Reduction – Lepinski – Major Reference Works – Wiley Online Library

 

Reduction of Iron‐Ore Pellets Using Different Gas Mixtures and Temperatures – Korobeinikov – steel research international – Wiley Online Library

 

Swelling Behavior of Iron Ore Pellets during Reduction in H2 and N2/H2 Atmospheres at Different Temperatures – Kovtun – steel research international – Wiley Online Library

 

ITmk3 – OneMine Mining and Minerals Library search results

Use of coal in direct ironmaking processes Mendeley

Developments in iron and steel making – Zervas – 1996 – International Journal of Energy Research – Wiley Online Library

 

Hot Metal Production by Smelting Reduction of Iron Oxide – Amit Chatterjee – Google Libros

 

Hot Metal Production by Smelting Reduction of Iron Oxide: Amazon.co.uk: Amit Chatterjee: 9788120349476: Books

 

9788120339361: Hot Metal Production by Smelting Reduction of Iron Oxide – IberLibro – Amitava Chatterjee: 8120339363

 

direct reduction iron – Dogpile.com Web Search

direct reduction iron company – Dogpile.com Web Search

direct reduced iron plants – Dogpile.com Web Search

direct reduced iron process – Dogpile.com Web Search

direct reduction at DuckDuckGo

MPT International 2-3/2020 (June) by MPT Metallurgy – Plant Engineering – Technology – issuu

 

DIRECT REDUCTION 03A ROTARY KILN 2019

 

Calcining Equipment-China Henan Zhengzhou Mining Machinery Co.,Ltd.

Rotary Kiln | Coal-based DRI Plant | Electrotherm – YouTube

Coal based Direct Reduction Rotary Kiln Process | ispatguru.com

Thesis-Tapash.pdf

Modelling and optimization of a rotary kiln direct reduction process

L0126598103.pdf

G1305064954.pdf

:: WELSPUN STEEL LIMITED ::

461-463.PDF

Iron and Steel 2020.pdf – 06062017101255Iron and Steel 2020_6.pdf   (Interesting book)

 

DIRECT REDUCTION 04  INMETCO PROCESS

 

 The Global Directory for Environmental Technology

Inmetco | SAIL

About Us | SAIL

Climate Action India- Climate Change & SAIL | SAIL

 

DIRECT REDUCTION 05  FASTMET PROCESS

 

FASTMET & FASTMELT Midrex Process MIDREX

KOBE STEEL, LTD.

Fastmet direct reduction process – Google Académico

 

DIRECT REDUCTION 06  ITmk3 PROCESS

 

ITmk3 – OneMine Mining and Minerals Library search results

https://www.onemine.org/search?pageSize=20&Keywords=ITmk3&SearchField=All

World's first commercial ITmk3 plant successfully begins production. || KOBE STEEL, LTD.

IJREAM_AMET_0032.pdf

(3) OVERVIEW OF ITMK3 PROCESS

 

ARTICLES

 

ITmk3 direct reduction process – Google Académico

label:Direct reduction by ITmk3 – Google Scholar

 

SMELTING REDUCTION 07  HISMELT PROCESS  SMELTING

 

(PDF) Hismelt Plant Ramp-Up

The HIsmelt technology: from Australia to China… and back again?

 SIPS2022 – Pathways to Sustainable Steelmaking Using the HIsmelt Ironmaking Technology

Shouguang Maolong New Material Technology Development Co., Ltd.

HIsmelt Corporation Pty Ltd | EPA Western Australia

Hismelt direct reduction process – Google Académico

HISMELT vs HIsarna– DEVELOPING A SUSTAINABLE STEEL PRODUCTION PROCESS – Buscar con Google

 

 

SMELTING REDUCTION 08  HIsarna PROCESS SMELTING

 

HIsarna Process of steel-making – Buscar con Google

HISARNA – DEVELOPING A SUSTAINABLE STEEL PRODUCTION PROCESS – Buscar con Google

Tata's revolutionary SMELTINGHIsarna Process of steel-making – Vídeo Dailymotion

HISMELT vs HIsarna– DEVELOPING A SUSTAINABLE STEEL PRODUCTION PROCESS – Buscar con Google

HIsarna, like HiSmelt not a threat to Mamtor | ECT

 

SMELTING REDUCTION 09  COREX PROCESS  SMELTING

 

corex technology in steel making – Buscar con Google

Corex direct reduction process – Google Académico

Corex steel – Buscar con Google

Corex Process – Wikipedia

JSW – Corex-Green Technology to produce hot metal

 

SMELTING REDUCTION 10 SMELTING BY HYDROGEN

 

H2 Green Steel

Hydrogen Plasma Smelting Reduction of Fe2 O3 – Buscar con Google

Hydrogen COLOCADO 098 Plasma Smelting Reduction of Fe2 O3 – Google Académico

HydrogenCOLOCADO 098 Plasma Smelting Reduction of Fe2O3

Hydrogen Plasma10 6 009 COLOCADO 098 Smelting Reduction of Fe2O3 | springerprofessional.de

(PDF) Thermodynamic 10 6 012 COLOCADO 100 of Liquid Iron Ore Reduction by Hydrogen Thermal Plasma

 

Metals | Free Full-Text |10 6 012  Thermodynamic of Liquid Iron Ore Reduction by Hydrogen Thermal Plasma

 

Preliminary investigation 10 6 014 COLOCADO 101 into direct reduction of iron in low temperature hydrogen plasma: Ironmaking & Steelmaking: Vol 40, No 1

 

Turning greenhouse gase COLOCADO 116 s into valuable chemicals | Carbon2Chem | thyssenkrupp Steel – YouTube

 

Advanced water electrolysis by thyssenkrupp COLOCADO 116 – YouTube

Direct reduction of iron in low temperature hydrogen plasma | Kali Charan Sabat – Academia.edu

 

Hydrogen: the future energy carrierCOLOCADO 106 – Dimensions

 

Hydrogen Plasma Smelting Reduction of Fe2 O3 – Buscar con Google

 

Hydrogen gas and its useCOLOCADO 141 in Iron and Steel industry | ispatguru.com

 

Solid state and smelting reduction CON CARBONof Panzhihua ilmenite concentrate with coke: Canadian Metallurgical Quarterly: Vol 51, No 4

 

 

DIRECT REDUCTION 15 OTHER PROCESSES

 

 

Hierro de reducción directa (DRI) | Asociación Internacional de hierro metálicos | IIMA

ArcelorMittal Corporate Responsibility DRI in South Africa

FINEX® Smelting Reduction Process Using Iron Ore Fines

FINEX (proceso siderúrgico) – Wikipedia, la enciclopedia libre

http–www.paulwurth.com-mainsite_products.html

Romelt Process for hot iron production – YouTube

 

K1 MET Metellurgical Competence Center

 

Home – K1-MET – Metallurgical competence center

DR 15 003 Dies ist ein Titel – 3.-Thomas-BUERGLER.pdf        (climat change)

 

 

ANSTEEL China

 

Jiuzhou Metal-One-Stop Steel Supplier

DR 15 001 Introduction of Pilot Plant Building of Hydrogen-based Iron Ore Direct Reduction with Fluidized Bed in Anstel – 4.-Guangyu-MA.pdf

 

HELIOS

 

Home Page – Helios

DR 15 002 The-Helios-Cycle-A-Decarbonized-Iron-Ore-Reducation-Process-Through-Sodium-Looping.pdf

 

HYDRA Centro Sviluppo Materiali CSM

 

DR 15.003 PowerPoint Presentation – 6.-Filippo-CIRILLI.pdf

 

DIRECT REDUCTION 16 METSO PROCESS

 

Metso Inaugurates Circored Pre-Reduction Pilot Plant – Association for Iron & Steel Technology

Metso opens Circored pre-reduction pilot plant in Frankfurt, Germany – Metso

H2-View News: Metso opens hydrogen iron ore pre-reduction pilot in Frankfurt | H2 Energy Group

 

DIRECT REDUCTION 17 HIBIS Group

 

DR 17 HBIS GROUP 空白演示 – 1.-Menglong-LI.pdf

 

DIRECT REDUCTION 20 DIRECT STEELMAKING PROCESSES

 

History

Direct reduction steelmaking process

Direct steel-making process

Emerging Technologies for Iron and Steelmaking

Process for fluidized bed direct … – Google Patent Search

 

DIRECT REDUCTION 25  MIDREX PROCESS

 

V Midrex | MUY BUENO Direct Reduction Ironmaking Technologies | MIDREX

Direct from Midrex – Midrex Technologies, Inc.

Direct from Midrex 29.06.2023 – 26  – Midrex Technologies, Inc.

MIDREX® Direct Reduction Plants – 2020 Operations Summary – Midrex Technologies, Inc.

KOBE STEEL, LTD. KOBELCO https://www.kobelco.co.jp/english/products/engineering/ironunit/dri.html

Midrex

Midrex Technologies, Inc

Midrex® Technology – – Siemens (low CO2 Ironmaking and its place in the new H2 Economy)

Process Technologies Direct Reduction Ironmaking MIDREX

MxCol – Midrex Technologies, Inc.

MIDREX NG – Midrex Technologies, Inc.

Project Development – Midrex Technologies, Inc.

Global Solutions – Midrex Technologies, Inc.

MAEGMA Minerals Turns to Primetals Technologies for MIDREX Flex Plant – Association for Iron & Steel Technology

MAEGMA Minerals Partners with Primetals Technologies for MIDREX Flex Plant Construction – think.steel

Current News of Primetals Technologies

midrex direct reduction process – Google Académico

HYL direct reduction process – Google Académico

label:iron ores Direct reduction by MIDREX – Google Scholar

MIDREX Plants – Buscar con Google

Midrex DRI – Buscar con Google

MIDREX process – Buscar con Google

Direct reduced iron – Buscar con Google

DRI reactor – Buscar con Google

DRI decarbonization – Buscar con Google

 

BOOKS and PAPERS

 

(2) Lecture 17 – Midrex Process//Gas Based DRI Production #ironmaking – YouTube

A comprehensive multiscale review of shaft furnace and reformer in direct reduction of iron oxide – ScienceDirect

Direct Reduction of Iron Process.pdf   (Book)

AIST Bibliografia MIDREX

label:Direct reduction by MIDREX – Google Scholar

label:iron ores Direct reduction by MIDREX – Google Académico

label:MIDREX – Google Search

 

VIDEOS

 

(38) The MIDREX Process Animation Video – YouTube

midrex® the world’s leading direct-reduced iron production p – YouTube

 

DIRECT REDUCTION 25A MIDREX NEWS and  PAPERS 2019  to 2024

 

Report: Worldwide DRI Production Sets New Record – Association for Iron & Steel Technology

 

Direct from Midrex | Midrex Technologies, Inc.   ( papers)

World DRI production reaches 140.8 Mt in 2024 | Midrex Technologies, Inc.

46 Direct from Midrex 2022  Midrex Technologies, Inc.

Midrex-DFM-2ndQtr2024.pdf

The Effects of Pressure on the Direct Reduction of Iron Oxides: Part 1 – Pressure & Particles Entrainment – Midrex Technologies, Inc.

 

Is HBI Physical Strength Affected By Hydrogen vs. Reformed Natural Gas? – Midrex Technologies, Inc.

 

MIDREX® Direct Reduction Plants 2022 OPERATIONS SUMMARY – Midrex Technologies, Inc.

 

The New Age of Hot Briquetted Iron (HBI): How will the Steel Industry Transform? – Midrex Technologies, Inc.

 

TOSYALI ALGERIE – JEWEL OF THE ALGERIAN STEEL INDUSTRY – Midrex Technologies, Inc.

 

Fueling the Future of Ironmaking: MIDREX Flex™ – Midrex Technologies, Inc.

 

Outlook for DRI Production and Use – Midrex Technologies, Inc.

 

Midrex, Vale to Further Develop Use of Iron Ore Briquettes in DRI Furnaces  – Association for Iron & Steel Technology

 

The Iron Ore Challenge for Direct Reduction On Road to Carbon-Neutral Steelmaking – Midrex Technologies, Inc.

 

4Q 2019 Direct From Midrex – Midrex Technologies, Inc.

Technical Papers & Brochures | MIDREX

MIdrexDRI_ProductsBrochure_4-12-18.pdf

Building_DR_Plants_Brochure.pdf

MidrexStatsBook2017.5_.24_.18_.pdf

Midrex_Plants_sheet9.2018_.pdf

MIDREX® Process  Products || KOBE STEEL, LTD.

Midrex H2 – Midrex Technologies, Inc.

The MIDREX® Process – YouTube

(20+) Watch | Facebook

 

DIRECT REDUCTION 25B MIDREX REDUCTION  by H2 2023

 

Clariant and Midrex Renew Green DRI Technology Collaboration – Association for Iron & Steel Technology

 

Clariant & Midrex fortify partnership in DRI, helping to decarbonize the steel industry

 

Midrex and AMI to offer DRI-based steelmakers complete process optimization solutions – Midrex Technologies, Inc.

 

World DRI production reaches 127.36 Mt in 2022 – Midrex Technologies, Inc.

Direct from Midrex – Midrex Technologies, Inc.

Midrex H2 – Midrex Technologies, Inc.

MIDREX NG™ with H2 Addition: Moving from natural gas to hydrogen in decarbonizing ironmaking – Midrex Technologies, Inc.

 

44 MIDREX H2: Ultimate Low CO2 Ironmaking and its place in the new Hydrogen Economy – Midrex Technologies, Inc.

 

ArcelorMittal Hamburg Turns 50 – Leading Another Ironmaking Renaissance – Midrex Technologies, Inc.

 

ArcelorMittal commissions Midrex to design demonstration plant for hydrogen steel production in Hamburg – Midrex Technologies, Inc.

 

74 Midrex and Paul Wurth Selected by H2 Green Steel – Midrex Technologies, Inc.

thyssenkrupp Steel Selects MIDREX Flex™ for Immediate CO2 Emissions Reduction – Midrex Technologies, Inc.

 

Kobe Steel & Mitsui Announce DRI Project in Oman; 5 Million Tons Using MIDREX® Hydrogen-based Technology – Midrex Technologies, Inc.

 

Primetals, Midrex and Metalloinvest lay solid foundation for development of green steelmaking – Midrex Technologies, Inc.

 

Midrex-DFM-1stQtr2024.final_.pdf

2Q 2023 Direct from Midrex – Midrex Technologies, Inc.

3Q 2022 Direct From Midrex – Midrex Technologies, Inc.

2Q 2021 Direct from Midrex – Midrex Technologies, Inc.

1Q 2020 Direct From Midrex – Midrex Technologies, Inc.

 

Dealing with an Uncertain Future: Direct Reduction in the Hydrogen Economy – Midrex Technologies, Inc.

 

Midrex Technologies Presents & Exhibits at AISTech 2022 in Pittsburgh – Midrex Technologies, Inc.

 

Carbon Capture & Use – VIDEOS Midrex Technologies, Inc.

 

Shaft Furnace Direct Reduction Technology – Midrex and Energiron | Scientific.Net

 

Waste heat recovery DRPROCESS by H2-for-Green-Steel-Conference-Direct-Reduction-Processes-based-on-H2.pdf

 

GravitHy cooperates with Plug for new green DRI facility in Finland – EGHAC

46A Midrex-DFM-1stQtr2025.pdf

46B Driving Global Sustainability in Iron & Steelmaking | Midrex Technologies, Inc.

46D Impact of Hydrogen DRI on EAF Steelmaking – Midrex Technologies, Inc.

47 Structure & Properties of Hydrogen-based DRI Compared with Natural Gas-Based Reduction | Midrex Technologies, Inc.

DR 25B -MIDREX Vincent-CHEVRIER.pdf

DR 25B 01 PowerPoint Presentation – Presentation_Vincent-CHEVRIER-Midrex.pdf

 

DIRECT REDUCTION 25C ARTICULOS DIRECT REDUCTION  by H2 2023

 

Primetals Technologies, voestalpine Partner on New Iron Plant – Buscar con Google

Primetals Technologies, voestalpine Partner on New Iron Plant – Association for Iron & Steel Technology

Current News of Primetals Technologies

Direct Reduction Iron Ores by H2 – Buscar con Google

The Direct Reduction of Iron – ScienceDirect

(11) The Direct Reduction of Iron | Request PDF

Hydrogen Assisted Direct Reduction of Iron Oxides | SpringerLink

103 Recent Trends in the Technologies of the Direct Reduction and Smelting Process of Iron Ore/Iron Oxide in the Extraction of Iron and Steelmaking | IntechOpen

Hydrogen Direct Reduced Iron | SpringerLink

Hydrogen-Based Direct Reduction of Iron Oxides | SpringerLink

Primary Exploration of Hydrogen Metallurgy | SpringerLink

Direct Reduction of Iron Oxides with Hydrogen | SpringerLink

Reduction of Iron Oxides with Hydrogen—A Review – Spreitzer – 2019 – steel research international – Wiley Online Library

 

Hierarchical_nature_of_hydrogenbased_direct_reduction_of_iron_oxides – 2201.12616.pdf

Microsoft Word – SHAHBEIG Vol885 2016 p114-122 – shahbeig_vol885_2016_p114_122.pdf

 

(5) Thermodynamic analysis and experimental verification of the direct reduction of iron ores with hydrogen at elevated temperature | Request PDF

 

(5) (PDF) Correlating Chemical Reaction and Mass Transport in Hydrogen-based Direct Reduction of Iron Oxide

 

(5) Direct reduction of iron ore pellets by H2 and CO: In-situ investigation of the structural transformation and reduction progression caused by atmosphere and temperature | Request PDF

 

(5) (PDF) Physics and Chemistry of Solid State Direct Reduction of Iron Ore by Hydrogen Plasma

 

(5) Influence of microstructure and atomic-scale chemistry on the direct reduction of iron ore with hydrogen at 700°C | Request PDF

 

(5) (PDF) Green steel at its crossroads: hybrid hydrogen-based reduction of iron ores

(5) Determining the Kinetic Rate Constants of Fe3O4-to-Fe and FeO-to-Fe Reduction by H2 | Request PDF

 

(5) A Theoretical Model for Assessing the Influence of N2 on Gaseous Reduction of Iron Ores with CO or H2 | Request PDF

 

O-17 Achievement of theoretical hydrogen consumption in Hydrogen Direct Reduction of Iron Ore

 

The demand response potential of a hydrogen-based iron and steel plant | IEEE Conference Publication | IEEE Xplore

 

Articles and papers about Direct reduction By H2 – Buscar con Google

Direct Reduction of Iron Oxides with Hydrogen – Buscar con Google

 

 papers about direct reduction by h2 – Google Académico

 

Hydrogen-Based Direct Reduction of Iron Oxides: A Review on the Influence of Impurities – sustainability-15-13047.pdf

 

DRI and the Pathway to Carbon-Neutral Steelmaking: Iron Ore Challenges (3759224)

Low CO2 and Reliable Valorization of Iron and Steel Waste Residuals in DR Plant (3759166)

 

Thermodynamic Behaviors of MIDREX Shaft (3759196)

DRI and the Pathway to Carbon-Neutral Steelmaking: Iron Ore Challenges (3759224)

 

DIRECT REDUCTION 26  HYFOR PROCESS

 

99.015 Danieli to Upgrade Turnkey Meltshop for ArcelorMittal Sestao – Association for Iron & Steel Technology

 

99.016 Construction Starts for Hydrogen-Based Ironmaking Plant

 

99.017 Hy4Smelt: Construction on Austria’s largest climate action research project starts at the voestalpine site in Linz – voestalpine

 

HYFOR pilot plant under operation – the next step for carbon free, hydrogen-based direct reduction is done | Primetals Technologies

 

Hydrogen-based ironmaking: MHI Australia and Primetals Technologies join Heavy Industry Low-Carbon Transition Cooperative Research Centre | Primetals Technologies

 

 

DIRECT REDUCTION 27  PERED (IRAN) PROCESS

 

PERED Technology for Direct Reduced Iron Production – IspatGuru

(PDF) An environmental study on persian direct reduction (PERED®) technology: Comparing capital cost and energy saving with MIDREX® technology

Pered Direct Reduction Process | PDF | Natural Gas | Iron

Development of Direct Reduced Iron in China: Challenges and Pathways

Mines and Metals Engineering – PERED

First Persian Direct Reduction Technology Applied

Introduction of PERED : company

Home : company

South Kaveh Steel Steelmaking Plant Project : company

 

DIRECT REDUCTION 28  POSCO HyREX PROCESS

 

DR 28 HyREX PowerPoint 프레젠테이션 – 6.-Myoung-Gyun-SHIN.pdf

DR 28 02 PowerPoint 프레젠테이션 – Presentation_Myoung-Gyun-SHIN-POSCO.pdf

 

DIRECT REDUCTION 30   HYL PROCESS 2018

 

HYL Process for Direct Reduction of Iron Ore | ispatguru.com

Hylsamex, un símbolo regio se derrite

Tenova HYL

Iron Reduction Techn – TENOVA IMPORTAN REF BIBLIOGRAF

HYL III Process | Industrial Efficiency Technology & Measures

 

DIRECT REDUCTION 30A  HYL ENERGIRON PROCESS

 

NEW MILLS in NUCOR Louisiana 2013

 

Nucor Sets New World Record for Cold DRI Production – Association for Iron & Steel Technology

 

Salzgitter will commission a hydrogen-ready direct reduction plant for iron by 2026 – Green Hydrogen News

 

untitled – energiron_book_2014.pdf

 

Iron Reduction Techn – TENOVA IMPORTAN REF BIBLIOGRAF

 

ENERGIRON® | Tenova

 

Tenova to provide the first hydrogen experimental DRI plant in Japan – GreenSteelWorld.com

 

Tenova to provide the first hydrogen experimental DRI plant in Japan

Tenova will supply a pilot direct reduction unit for Nippon Steel

Energiron THE INNOVATIVE DIRECT REDUCTION TECHNOLOGY

CDI Corporation Teams Up With Nucor and Tenova To Develop World's Largest Direct Reduced Iron Facility

 

———————-

untitled – Energiron_Brochure-2020.pdf

Energiron® DRI Tower Construction – YouTube

ENERGIRON | DRI TECHNOLOGY BY TENOVA AND DANIELI

(1) Videos ENERGIRON – YouTube

(1) Energiron® ZR process – YouTube

ENERGIRON 08 SEAISI_2021_Energiron.pdf

http–media.wix.com-ugd-f57d32_28ce2763206049ebb5d22d41fe964abf.pdf

http–www.spongeironindia.in-presentations-AndresVilla.pdf MUY BUENO

JSPL Selects Energiron for Four DR Plants Steel Times International

Danieli Training Energiron DRI plants

https://www.danieli.com/en/news-media/news/omk-contracts-danieli-new-2-5-mtpy-direct-reduction-plant_37_570.htm

energiron – Buscar con Google

Energiron – a new generation of direct reduction technology-Alibaba Trade Forums

Energiron direct reduction process – Google Académico

Direct-Reduced Iron Process (DRI) | NIPPON STEEL ENGINEERING

Energiron ZR DR – Industry Participants

Nova Analytical Systems #144 – EnErgiron Technology – Econom Flexible, Environ Friendly

Shaft Furnace Direct Reduction Technology – Midrex and Energiron

Tenova HYL

 

ARTICLES

 

label:iron ores Direct reduction Energiron – Google Scholar

 

DIRECT REDUCT 30B  HYL ENERGIRON PROCESS by H2 2023

 

Search | Tenova

Nucor achieves world production record thanks to ENERGIRON | Tenova

ENERGIRON | DRI TECHNOLOGY BY TENOVA AND DANIELI

138 Energiron ® Largest Hydrogen-Based DRI Facility in China for Baosteel Zhanjiang – ENERGIRON

ENVIRONMENT – ENERGIRON

HYDROGEN – ENERGIRON

CO2 REMOVAL SYSTEM – ENERGIRON

ENERGIRON ZR – ENERGIRON

2022 Energiron® Licensee Conference – Two-day event hosted by Tenova and Danieli – ENERGIRON

 

137 TATA STEEL CHOOSES ENERGIRON® TECHNOLOGY – ENERGIRON

Salzgitter Flachstahl selects Energiron DR technology ‹ Danieli

ArcelorMittal relies on Energiron® DRI technology ‹ Danieli

Tenova provide Arcelor Mittal with new plant | WIRE

Tenova DRI Plant for ArcelorMittal Dofasco | Tenova

80B Second hydrogen-based DRI plant to be installed in China

Largest Hydrogen-Based DRI Facility in China | Tenova

Energiron direct reduction technology: ecological and economic green steel solutions – Millennium Steel

 

Shaft Furnace Direct Reduction Technology – Midrex and Energiron | Scientific.Net

Energy and Power Technology | Scientific.Net

DRI Archives – GreenSteelWorld.com

Tenova’s ENERGIRON DR Plant Produces First DRI – Association for Iron & Steel Technology

002 Tenova’s ENERGIRON DR plant achieves its first direct reduced iron production in Bolivia

002A Tenova plant in Bolivia produces first Direct Reduced Iron

002B Tenova’s ENERGIRON plant achieves first DRI production at Bolivia

 

DIRECT REDUCTION 40 MULTINATIONALS and STATISTICS

 

About Metallics | International Iron Metallics Association

Nucor to invest in US DRI plant, sees scrap up

https://www.spglobal.com/platts/en/market-insights/latest-news/metals/090220-omk-to-build-complex-to-make-steel-in-dri-pellet-fed-electric-arc-furnace

 

https://www.midrex.com/wp-content/uploads/MidrexSTATSBook2023.pdf

 

https://www.gminsights.com/es/industry-analysis/direct-reduced-iron-market

 

 

DIRECT REDUCTION 50  DR AND  SMELTING  (Videos of processes )

 

Direct reduction (Videos)

 

(38) Direct reduction videos – YouTube

(34) Largest DRI Plant in the World – YouTube

(38) Teamvideo @ voestalpine Texas LLC – YouTube

Direct reduced iron and production of DRI part 1 – YouTube

Direct reduced iron – YouTube

DRI , GAS BASED PROCESSING – YouTube

Determination of Reduction Extent in DRI Production – YouTube

Northshore DR Grade Pellet Project Cleveland Cliffs 13.08.2019 – YouTube

Francesco Memoli STEEL AND DR- YouTube

 

Midrex (Videos)

 

Midrex – Process Principle (English) – YouTube

MIDREX PLANT AUTOMATION DEMO BASED ON 3D SCADA CONTROL SYSTEM – YouTube

Midrex® the world’s leading direct-reduced iron production process – YouTube

New HBI (MIDREX) plant will begin operations in 2019 in Canada # Steel News (Jan – 16) – YouTube

DRI e MIDREX.avi – YouTube

A Direct Reduced Iron (DRI) plant – LIBERTY Steel Group

 

Voestalpine Texas 2016 (Videos)

 

June 2016: Progress of construction work on the HBI plant Texas, Corpus Christi – YouTube

Timelapse voestalpine Texas LLC – YouTube

Opening voestalpine Texas LLC – YouTube

The HBI direct reduction process – voestalpine in Texas – YouTube

 

Corex (is Smelting) videos

 

Corex® smelting reduction plant – YouTube

COREX Process Iron Smelting – YouTube

 

Energiron (Videos)

 

(38) ENERGIRON for Direct Reduction – YouTube

(38) Energiron® ZR process – YouTube

(2) Energiron® ZR process – YouTube

(38) Direct reduction videos Energiron – YouTube

DRI plant – YouTube Energiron

DRI plant – YouTube

Energiron Sept2016 – YouTube

Nanometal LLC – ENERGIRON Facebook

 

Finex

 

(8) Finex® – DESCARGAD the ironmaking solution of the 21st century – YouTube

 

ITmk3 Fastmet- Fastmelt (smelting)

https://www.ijream.org/papers/IJREAM_AMET_0032.pdf

https://www.researchgate.net/publication/280100086_Reduction_and_meltdown_of_pellets_in_the_ITmk3_process

https://es.scribd.com/document/51969684/itmk3-R

https://www.ispatguru.com/itmk-3-process-of-making-iron-nuggets/

ITmk3 Process (technology of iron nuggets making) – YouTube

https://www.kobelco.co.jp/english/releases/2010/1182907_14776.html

FASTMET Process for DRI ironmaking – YouTube

Zinc in the FASTMET DRI ironmaking – YouTube

FASTMELT Process for hot metal production – YouTube

 

Rotary (videos)

 

(38) Turnkey Project | DRI Plant | Electrotherm – YouTube

rotary kiln DRI production technology – YouTube

SL – RN (Iron Making Rotary Kiln Process for DRI Production) – YouTube

rotary kiln.swf – YouTube

DRI , THE SPONGE IRON INDUSTRIE FULL VIDEO – YouTube

Iron Production Process – YouTube

sponge iron details – YouTube

 

Hismelt (smelting)

 

Kwinana Hismelt Plant Iron Smelting – YouTube

HIsmelt Closure Project – YouTube

Hismelt Process Iron Smelting. Background – YouTube

Can HiSmelt Be The Future Technology of Ironmaking? – YouTube

  1. ii) Smelting Reduction Processes | Request PDF

 

HIsarna (smelting)

 

Tata's revolutionary HIsarna Process of steel-making – Vídeo Dailymotion

Tata's revolutionary HIsarna Process of steel-makingMUCH VIDE – YouTube

 

Romelt (smelting)

 

https://www.ispatguru.com/romelt-process-for-ironmaking/

https://www.sail.co.in/en/learning-center/smelting-reduction-technologies

https://www.ctc-n.org/technologies/smelt-reduction-iron-and-steel-sector

 

 

DIRECT REDUCTION 65 ARTICLES and MODERN  TRENDS

 

Direct reduced iron process – tec-science

A Brief Overview 65 001 of Low CO2 Emission Technologies for Iron and Steel Making – ScienceDirect

A bottom-up analysis65 002 of China’s iron and steel industrial energy consumption and CO2 emissions – ScienceDirect

 

DIRECT REDUCTION 67 REDUCTION by HYDROGEN

 

Hydrogen‐Based Direct Reduction of Iron Oxides Pellets Modeling – Cavaliere – 2023 – steel research international – Wiley Online Library

 

Recent Developments in Plasma Metal Processing : High Temperature Materials and Processes

 

Potential transitions in the iron and steel industry in Sweden: Towards a hydrogen-based future? Emrah Karakaya a, *, Cali Nuur a, Linda Assbring b – Buscar con Google

 

Adopting hydrogen directCOLOCADO 087 reduction for the Swedish steel industry: A technological innovation system (TIS) study – Adopting-hydrogen-direct-reduction-for-the-Swedish-steel-industry-A-technological-innovation-system-TIS-study.pdf

 

Efficiency of hydrogen COLOCADO 092 10 6 002 utilization in reduction processes in ferrous metallurgy – ScienceDirect

 

Assessment of hydrogen 10 6 003 direct reduction for fossil-free steelmaking – ScienceDirect

CDA Steelmaking 10 6 004 without carbon axel.sormann@k1-met.com – Buscar con Google

 

Microsoft Word -10 6 006 SD6.doc – 0803.2831.pdf

 

(PDF) A Laboratory 10 6 006  Study of the Reduction of Iron Oxides by Hydrogen

 

ArcelorMittal 10 6 007 commissions Midrex to design demonstration plant for hydrogen steel production in Hamburg – ArcelorMittal

 

The Use of Hydrogen COLOCADO 084 10 6 008 in the Iron and Steel Industry – fcto-h2-scale-kickoff-2018-19-green.pdf

 

hydrogen  steelmaking-for-a-low-carbon-economy.pdf

Towards a fossil free steel sector

https://kth.diva-portal.org/smash/get/diva2:1372050/FULLTEXT01.pdf

 

Hydrogen: the future energy 10 6 016 carrier | Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences

 

Reduction of Fine Ores in Argon‐Hydrogen Plasma – Plaul – 2005 – steel research international – Wiley Online Library

 

Hydrogen plasma COLOCADO 096 10 6 017 smelting reduction – An option for steelmaking in the future

 

blast furnace hydrogen Reduction – Buscar con Google (blast furnace)

https://www.ijraset.com/fileserve.php?FID=9955 (Hydrogen Plasma smelting reduction )

high temp. chemistry-its role in metal production.pdf

Studies on plasma processing of blue dust – ethesis

http://www.aimnet.it/la_metallurgia_italiana/2018/luglio_agosto/masab.pdf (Theory)

 

RECENTS  2020

 

COMMUNICATION COLOCADO 078 079 FROM THE COMMISSION TO THE EUROPEAN PARLIAMENT, THE COUNCIL, THE EUROPEAN ECONOMIC AND SOCIAL COMMITTEE AND THE COMMITTEE OF THE REGIONS A hydrogen strategy for a climate-neutral Europe – Publications Office of the EU

 

 Powering a climate-neutral economy 10 6 020 COLOCADO 078

 energy_ system_integration_strategy_.pdf  10 6 021 COLOCADO 078

hydrogen_strategy.pdf  10 6 022COLOCADO 078

 Q&A: An EU Strategy for Energy System Integration  10 6 023 COLOCADO 078

Q&A: A Hydrogen Strategy  10 6 024 COLOCADO 078

 EU Energy System Integration Strategy  10 6 025 COLOCADO 078

 EU Hydrogen Strategy  10 6 026 COLOCADO 078

 European Clean Hydrogen Alliance  10 6 027COLOCADO 078

https:// www.ssab.com/news/2020/08/hybrit-ssab-lkab-and-vattenfall-to-start-up-the-worlds-first-pilot-plant-for-fossilfree-steel 19020 002 COLOCADO 095

 

 Media invitation: HYBRIT – the world’s very first pilot plant for fossil-free steel is now to start operation – SSAB 09020 003 COLOCADO 095

 

https://19020 004www.ssab.com/news/2020/09/ssab-joins-the-european-clean-hydrogen-alliance

 

20200917 Successful implementation of bold new 2030 climate target urgently needs tangible framework

 

 Adopting hydrogen10 6 015 direct reduction for the Swedish steel industry: A technological innovation system (TIS) study  (PDF)COLOCADO 087

 

Hydrogen Steelmaking – YouTube (Video)

(5) Hydrogen and Low-Co2. – YouTube  (Video)

(5) The role of hydrogen COLOCADO 153 in future low-carbon energy systems (Low-Carbon Energy Center Webinar) – YouTube (Video)

 

(5) hydrogen from electrolysis of water – YouTube  (Video)

(5) The Hydrogen Electrolyser – YouTube (Video)

(8) Production, Storage DESCARG Safe Handling of Hydrogen – YouTube (Video)

 

MORE RECENTS  2022

 

Direct reduction iron ores – Buscar con Google

DRI steel hydrogen – Buscar con Google

DRI steel hydrogen – Buscar con Google

DRI steel hydrogen – Búsqueda de Google

Hydrogen dri production of Iron ores with Hydrogen – Buscar con Google

ArcelorMittal successfully tests partial replacement of natural gas with green hydrogen to produce DRI | ArcelorMittal

 

Hydrogen-based steelmaking to begin in Hamburg | ArcelorMittal

ArcelorMittal Long Products Canada tests DRI production with green hydrogen – GreenSteelWorld.com

 

ArcelorMittal tests green hydrogen-based DRI production

ArcelorMittal tests «green» hydrogen in iron ore reduction process – Canadian Mining Journal

ArcelorMittal tests the use of green hydrogen in DRI – Stainless Steel World.net

ArcelorMittal successfully tests partial replacement of natural gas with green hydrogen to produce DRI

 

DRI Archives – GreenSteelWorld.com

Kobe Steel set to launch Japan’s first low CO₂ blast furnace steel – GreenSteelWorld.com

Hyundai Steel to build 'Hy-Cube', a CO2-neutral steel production system – GreenSteelWorld.com

 

POSCO develops hydrogen reduction steelmaking to achieve net-zero by 2050 – GreenSteelWorld.com

 

Hydrogen direct reduction (H-DR) in steel industry—An overview of challenges and opportunities – ScienceDirect

 

https://ars.els-cdn.com/content/image/1-s2.0-S095965262103972X-ga1_lrg.jpg

1-s2.0-S095965262103972X-ga1_lrg.jpg (Imagen JPEG, 1272 × 886 píxeles) – Escalado (84 %)

 

Circored™ hydrogen-based reduction – Metso Outotec

Case study: H2 in Steel | Climate Solutions

New hydrogen-fueled DRI steel plant in Sweden – EUROMETAL

Impact of Hydrogen DRI on EAF Steelmaking, MIDREX – Hydrogen Central

Market for Green Hydrogen will Grow Explosively – Hydrogen Central

Decarbonizing Steel Production with Green Hydrogen – YouTube

HYDROGEN Mem-Tech

PowerPoint Presentation – AIST_MENA_SteelForum21_A_Manenti.pdf

43 Tenova to Build Hydrogen-Based DRI Facility in China | Industrial Heating

Green Steel production — H2 Green Steel

Fact-sheet-Hydrogen-H2-based-ironmaking.pdf

Green Hydrogen as a Clean Process Alternative in the Iron and Steel Industry | Dioxide Materials

Pilot scale direct reduction with hydrogen – Hybrit

The Potential of Hydrogen for Decarbonization: Reducing Emissions in Iron and Steel Production

green-steel-insight-brief.pdf

Green steelmaking will need technology and mining advances | IEEFA

Japan to speed up hydrogen-based steelmaking technology | Argus Media

20210330_ZC.pdf  (Nippon Steel Carbon Neutral Vision 2050 ) 2021

Green hydrogen for steel production: RWE and thyssenkrupp plan partnership

 

Products

https://www.thyssenkrupp.com/en/products

 

Hydrogen transport technologies: the key to a global hydrogen economy

001 The Effect of the Endothermic Reaction Nature on the Iron Ore Pellet Reduction Using Hydrogen | SpringerLink

 

10 6 038 JRC Publications Repository

003 Reduction of Iron Oxides with Hydrogen—A Review – Spreitzer – 2019 – steel research international – Wiley Online Library

 

 

DIRECT REDUCTION 67A REDUCTION by HYDROGEN  VIDEOS

 

H2-View News: Metso opens hydrogen iron ore pre-reduction pilot in Frankfurt | H2 Energy Group

 

Chinese Steel Giant Makes Production Smarter with Innovation|BIZTODAY – YouTube

The MIDREX® Process – YouTube

¡La escala más grande del mundo! Proceso de fabricación de alambrón de acero con mineral de hierro – YouTube

How a direct reduction plant works – explained in 5 minutes – YouTube

Changing a Century of Steelmaking in a Flash – YouTube

Finex® – the ironmaking solution of the 21st century – YouTube

How a direct reduction plant works – explained in 5 minutes – YouTube

New breakthrough claims 90% reduction in Steelmaking emissions. – YouTube

Hydrogen reduction of iron oxide – YouTube

Cleveland-Cliffs wins up to $575M in DoE funding for decarbonization initiatives #CLF #Hydrogen – YouTube

Blast Furnace (Iron Production) – YouTube

Imagine your dream steelworks! POSCO HyREX(Hydrogen Reduction Ironmaking) – YouTube

Traditional vs. Low-Carbon Steelmaking: The Shift to Hydrogen – YouTube

Reduction of iron ore by hydrogen with Themys H2 – YouTube

Spong Iron Production//DRI Production// #ironmaking – YouTube

Decarbonizing Steel Production with Green Hydrogen – YouTube

(38) Energiron – YouTube

Can hydrogen powered plants turn steel production 'green'? | DW News – YouTube

 

Decarbonising Ironmaking Hydrogen based DRI – Webinar Presentaion by TENOVA – YouTube

 

Decarbonising Ironmaking: Hydrogen-based DRI in China & India | ENGAGE 2.0 – YouTube

 

H2 based DRI: the safe solution to decarbonize the iron and steel industry TENOVA – YouTube

 

ArcelorMittal Hamburg investigates hydrogen in steel production – YouTube

 

DIRECT REDUCTION 68 VIDEOS in GENERAL

 

Direct reductionMUCHOS Iron Ores By Hydrogen – YouTube

Energiron – YouTube

Energiron – YouTube

Energiron – YouTube

How a direct reduction plant works – explained in 5 minutes – YouTube

Finex® – the ironmaking solution of the 21st century – YouTube

How a direct reduction plant works – explained in 5 minutes – YouTube

How a direct reduction plant works – explained in 5 minutes – YouTube

 

ASIDERURGIA 15A MOLTEN METHOD OXIDE ELECTROLYSIS NEW 2025

 

 

last technological advances in iron and steelmaking – Buscar con Google

molten oxide electrolysis steel – Buscar con Google

molten oxide electrolysis steel – Buscar con Google

Boston Metal – Wikipedia

Making steel with electricity – MIT Department of Materials Science and Engineering

42A Green Steel Solution – Boston Metal

A new way to make steel could cut 5% of CO2 emissions at a stroke | MIT Technology Review

A new anode material for oxygen evolution in molten oxide electrolysis | Nature

Molten oxide electrolysis in iron and steel making – Google Académico

Direct electrochemical conversion of metal oxides to metal by molten salt electrolysis: a review – K. S. Mohandas, 2013

 

soes to produce hydrogen in iron and steelmaking – Buscar con Google

woburn massachusetts.boston metal company – Buscar con Google

Using Electricity to Transform Metals Processing – Reducing Costs of Metal Extraction – 1 of 5 – YouTube

 

Making steel with electricity | MIT News | Massachusetts Institute of Technology

99.039 Donald Sadoway at EmTech MENA 2019: Steel Production without Co2 Emissions – YouTube

 

 

———————————————-

———————————————–

 

 

 

ASIDERURGIA 18 – NON ORIENTED MAGNETIC STEEL SHEETS:  PHYSICAL CHEMISTRY AND METALLURGICAL BACKGROUND, MANUFACTURING PROCESSES, PROPERTIES

 

 

CA 000

The physical, chemical, and metallurgical fundamentals can be found in Volume I of the author’s book ¨ Review of modern steel processes Used for the manufacture of Non – Oriented Grain Magnetic Steel sheets¨ : in

 

https://www.ironandsteelmaking.com/electrical-steels/

https://www.researchgate.net/profile/Ignacio-Ibarrondo/research

 

 

CA 001 Magnetic Steel Sheet 2019

 

Catching the wave: Fives and Baowu launch new electrical steel lines

C 01 Latest news in Non Oriented Electrical steels – Buscar con Google

C 01A Non-Grain Oriented Electrical Steel Market Is Booming So Rapidly | Taiwan News | May. 24, 2024 11:47

 

C 01B Non-oriented Electrical Steel Market Size | US$ 26880 million by 2032, | RESEARCH DATA

 

C 01C Non Grain Oriented Electrical Steel Market-2023 will Revenue to Cross reaching USD 30132.06 million by 2028 Research by Business Opportunities, Top Companies report covers, Market-specific challenges, consumption by Regional data

 

C 01D 2031, Non-oriented Electrical Steel Market Size 2023: Expansion – SOUTHEAST – NEWS CHANNEL NEBRASKA

 

C 01E Manufacturing of non-grain-oriented electrical steels: review – s00170-024-13837-9.pdf

 

C 01F New facility in Mobile County promises to deliver ‘clean energy’ electrical steel – al.com

 

C 02 JFE Steel Corporation – Products and Services – ELECTRICAL STEEL SHEETS

C 03 Electrical steels – Industry IMPORT GRADOS

C 03A Industry catalogs R 090I

https://industry.arcelormittal.com/products-solutions/Products_in_the_spotlight/electricalsteels

 

C 04 Cogent Power – Part of the Tata Steel Group VER CATALOGOS

C 05 Home | Tata Steel in Europe

C 06 Tata Steel – Electrical steels

C 07 Tata Steel – Electrical steels in Automotive

C 08 Electrical Steels | Aperam  

C 08A Non Grain Oriented (NGO) | Aperam

My POSCO | 마이 포스코

https://my.posco.com/s/exshowrmintegratedsearch?searchText=electrical+steel+

C 09 Posco Poggenamp

C 09A Electrical Steel – Products by usage – Products – POSCO

C 09B Products Search – Products – POSCO

C 09C POSCO Expands Production of its Non-Oriented Silicon Steel – The Steel Wire

C 09E Product Specification – Electrical steel- Products – POSCO PRODUCTS

C 10 Customers-Products-Cold-Rolled Coil – www.USSTEEL.com – United States Steel

C 11 Products :: Cleveland-Cliffs Inc. (CLF)

 https://www.clevelandcliffs.com/products

C 11A DI-MAX M-13 Non-Oriented Electrical Steel – CLF_ProductData_DiMaxM13_052021.pdf

C 11B CLF_ProductData_MotorMaxTechnical Bulletin_632024.pdf

C 11B CLF_ProductData_Battery Electric Vehicle_062024.pdf

C 11C DI-MAX M-10X Non-Oriented Electrical Steels – CLF_ProductData_DIMAXM10X_052021.pdf

 

C 11D CLF_ProductData_DiMaxM15M47_062023.pdf

C 11E CLF_ProductData_MOTOR-MAX_052024.pdf

C 11F CLF_ProductData_CR_Motor Lamination_122023.pdf

C 12  electrical steels italy – Yahoo! Search Results

C 13 thyssenkrupp Electrical Steel GmbH > Locations > Company > thyssenkrupp Steel Europe

C 13A Electrical steel – thyssenkrupp

C 13B powercore® – non grain oriented steel – thyssenkrupp

C 14 iBaosteel

C 14A https://www.researchgate.net/publication/381163219_Manufacturing_of_non-grain-oriented_electrical_steels_review

 

C14A1https://www.mdpi.com/1996-1073/16/24/7954

 

C14A2 https://www.ironandsteelmaking.com/electrical-steels/

 

C 14B  Baosteel Electrical Steel

C 15A https://www.voestalpine.com/stahl/en/Products/Steel-strips/Electrical-steel

C 15A1 https://www.voestalpine.com/isovac/en

C 15B Goods and insulating varnish systems – isovac®

C 15C Fields of application https://www.voestalpine.com/isovac/en/Products/Applications

label:strip casting technology electrical steels – Google Académico

 

CA 002 MANUFACTURING PROCESS 2019

 

C 11 Manufacturing Process – Electrical steel- Products – POSCO PRODUCTS

D 01 (11) Facebook

D 02 Characterization Methods along the Process Chain of Electrical Steel Sheet—From Best Practices to Advanced Characterization – PMC

 

D 03 http://esales.baosteel.com/baosteel_products/eleSteel/en/products/products_02.jsp

D 04 Influence of Chemistry and Hot Rolling Conditions on High Permeability Non-Grain Oriented Silicon Steel | Journal of Metals, Materials and Minerals

 

D 05 (2) Influence of hot-rolling parameters on microstructure and magnetic properties of non-oriented electrical steel

 

D 06 Effects of hot rolling and coiling temperatures on microstructure, texture and magnetic properties of 1.6 wt% Si non-oriented silicon steel – ScienceDirect

 

D 07 Improving magnetic properties of non-oriented electrical steels by controlling grain size prior to cold rolling – ScienceDirect

 

D 08 002 The effect of grain size before cold rolling on the magnetic properties of thin-gauge non-oriented electrical steel – IOPscience

 

D 09 The effect of cold-rolling on the magnetic properties of non-oriented silicon steel sheets (Journal Article) | OSTI.GOV

 

D 10 Effect of Rolling Process on Magnetic Properties of Fe-3.3 Wt% Si Non-Oriented Electrical Steel – Effect of Rolling Process on Magnetic Properties of Fe-3.3 Wt% Si.pdf

 

D 11 003 Effect of Shear Bands Induced by Asymmetric Rolling on Microstructure and Texture Evolution of Non-Oriented 3.3% Si Steel – PMC

 

D 12 007 Electrical steel with improved magnetic characteristics by asymmetric hot and cold rolling (Asylectro) Research – Publications Office of the EU

 

D 13 Non-oriented electrical ANNEALING steel with core losses comparable to grain-oriented electrical steel – NASA/ADS

 

D 14 Transformation of LaAlO3 Inclusions During Heating in a Solid Non-oriented Electrical Steel | SpringerLink

 

D 15 Texture Control During the Manufacturing of Nonoriented Electrical Steels – 173083.pdf

 

D 16 [PDF] Non-Oriented Electrical Steel Sheet: The Magnetic Properties Losses on Thickness Lamination Using Epstein Tester Frame by Yanawati Binti Yahya, Mohd Khairil Rahmat, N. S. Shariffuddin · 10.1088/1757-899x/864/1/012205 · OA.mg

 

D 17 Impact of the interaction of material production and mechanical processing on the magnetic properties of non-oriented electrical steel | AIP Advances | AIP Publishing

Production Proces of non oriented electrical steels – Buscar con Google

 

https://www.ironandsteelmaking.com/information-and-procedures-of-non-oriented-electrical-steels-steelmaking/

 

 

CA 003 CLASIFICATION

 

F 01 G 10 Electrical Steel, Non-oriented Electrical Steel

F 02 Silicon Steel-山东日钢金属制品有限公司

F 03 006 MiT_6_2010.vp – steiner.pdf

F 06 Jiangsu Junlicheng Steel Industry Co., Ltd

 

CA 004 CATEGORIES  and GRADES of N.O.

 

G 01 http://esales.baosteel.com/baosteel_products/eleSteel/en/products/products_05.jsp

G 04 Electrical Steel: The heart of an electric motor – thyssenkrupp AG

G 04A Electrical steel – thyssenkrupp

G 05 Components for electric motors & generators – Estamode

G 09 C 09E Product Specification – Electrical steel- Products – POSCO PRODUCTS

CO2-reduced electrical steel from thyssenkrupp as a sustainable base material for the energy turnaround: thyssenkrupp Electrical Steel supplies transformer specialist SGB-SMIT with electrical steel for E.ON's new digital stations

 

F 01 G 10 Electrical Steel, Non-oriented Electrical Steel

 

CA 005 Super E Core 2019

 

H 01 http–www.jfe-steel.co.jp-en-products-electrical-catalog-f1e-002.pdf

H 02 Super e core – Buscar con Google

H 06 Propulsion Systems for Hybrid Vehicles – Google Books

H 03 http://www.jfe-steel.co.jp/en/products/electrical/product/supercore/index.php

H 04 http://www.jfe-steel.co.jp/en/products/electrical/product/supercore/detail.php

H 05 http://www.jfe-steel.co.jp/en/products/electrical/product/supercore/use.php

 

CA 006 HIGH SILICON 6.5% OBTAINED By RAPID SOLIDIFICATION .

 

I 01 005 Texture and Magnetic Property of Fe-6.5 wt % Si Steel Strip with Cu-Rich Particles Modification | ACS Omega

 

I 02 Microstructure, texture and magnetic properties of strip-cast 1.3% Si non-oriented electrical steels | Request PDF

 

I 03 Microstructure, texture evolution and magnetic properties of strip-casting non-oriented 6.5 wt.% Si electrical steel sheets with different thickness | IEEE Conference Publication | IEEE Xplore

 

I 04 Castrip electrical steels – Buscar con Google

I 04bis CASTRIP technology and Electrical steels – Buscar con Google

I 05 (PDF) Role of Annealing Time in Thin-Gauge Non-oriented Silicon Steels Processed by Strip Casting

 

I 06 Evolution of Microstructures and Texture of 1.3%Si Non-Oriented Electrical Steel in the Twin-Roll Strip Casting Process | Request PDF

 

I 07 Microstructure and texture evolution of strip casting 3 wt% Si non-oriented silicon steel with columnar structure | Request PDF

 

I 08 (PDF) Effects of Coiling Temperature after Hot Rolling on Microstructure, Texture, and Magnetic Properties of Non-Oriented Electrical Steel in Strip Casting Processing Route

 

I 09 Solidification structure and crystallographic texture of strip casting 3 wt.% Si non-oriented silicon steel | Request PDF

 

I 10 Effects of hot rolled microstructure after twin-roll casting on microstructure, texture and magnetic properties of low silicon non-oriented electrical steel | Request PDF

 

I 11 Metals | Free Full-Text | Role of Hot Rolling in Microstructure and Texture Development of Strip Cast Non-Oriented Electrical Steel

 

Abstract Title: Recent Product Developments with Ultra-Thin Cast Strip Products Produced by the CASTRIP® Process – KillmoreCDevelopmentofaFamilyofHighStrengthLowcarbonMicroalloyedUltraThincastStripproductsProducedbythecastripprocessCastripMST2010paperFinalV21July14KCjw-mergedCKedits-1.pdf

 

CA 006bis  HIGH SILICON 6.5% OBTAINED By RAPID SOLIDIFICATION

 

CASTRIP PROCESS

 

I 04 Castrip electrical steels – Buscar con Google

I 04bis CASTRIP technology and Electrical steels – Buscar con Google

https://www.ironandsteelmaking.com/  (Strip casting technology : Free Book)

 

 

CA 007  HIGH SILICON 6.5% OBTAINED by ROLLING

 

J 01 Tatsuhiko Hiratani | Semantic Scholar MANY  REFERENCES

J 02 Tatsuhiko Hiratani

https://www.researchgate.net/profile/Tatsuhiko-Hiratani

J 04 High Efficiency Warm-cold Rolling Technology of Fe-6.5wt%Si Alloy Sheets | Semantic Scholar

 

J 05 Cold rolled Fe-6.5 wt. % Si alloy foils with high magnetic induction: Journal of Applied Physics: Vol 111, No 9

 

J 06 Processing of Fe-6.5wt.%Si alloy foils by cold rolling

J 07 Metals | Free Full-Text | Textures of Non-Oriented Electrical Steel Sheets Produced by Skew Cold Rolling and Annealing | HTML

 

J 08 Two-stage warm cross rolling and its effect on the microstructure, texture and magnetic properties of an Fe-6.5 wt% Si non-oriented electrical steel | SpringerLink

 

J 09 Two-stage warm cross rolling and its effect on the microstructure, texture and magnetic properties of an Fe-6.5 wt% Si non-oriented electrical steel

 

J 10 Development Rolling mill for high 6,5% Silicon Content – Buscar con Google

 

CA 008 WARM COLD ROLLING

 

K 01 (PDF) Research of Rolling Process with Warm for Cold-Rolled Non-Oriented Electrical Steel

 

K 02 Effect of Warm Rolling on the Rolling and Recrystallization Textures of Non-oriented 3% Si Steel | Semantic Scholar

 

K 03 warm rolling in non oriented magnetic steel sheets – Búsqueda de Google

K 04 008 Effect of warm rolling process on texture of Fe 6.5 %Si steel sheet

K 05 Two-stage warm cross rolling and its effect on the microstructure, texture and magnetic properties of an Fe-6.5 wt% Si non-oriented electrical steel | springerprofessional.de

 

K 06 EBSCOhost | 144203317 | Two-stage warm cross rolling and its effect on the microstructure, texture and magnetic properties of an Fe-6.5 wt% Si non-oriented electrical steel.

 

CA 009 MAGNETISM : BOOKS and BIBLIOGRAPHY (Papers)

 

L 02 Precipitates in Compact Strip Production (CSP) Process Non-Oriented Electrical Steel – metals-10-01301-v2.pdf

 

L 03 Electrical steels – Búsqueda de Google

L 04 Electrical Steels | SpringerLink

L 05 Tatsuhiko Hiratani | Semantic Scholar

https://www.semanticscholar.org/author/T.-Hiratani/40033414

L 06 (2) Tatsuhiko Hiratani

L 08 Tatsuhiko Hiratani – Buscar con Google

 

 

BOOKS

 

L 09 Electrical Steels: Production, MOSES 2019 characterisation and applications Energy Engineering: Amazon.es: Anthony Moses, Keith Jenkins, Philip Anderson, Hugh Stanbury:

 

https://www.amazon.es/Electrical-Steels-Characterisation-Applications-Engineering/dp/178561276X/ref=sr_1_fkmrnull_1?__mk_es_ES=%C3%85M%C3%85%C5%BD%C3%95%C3%91&keywords=ISBN-13%3A+978-1785612763&qid=1556529876&s=books&sr=1-1-fkmrnull

 

L 10 Electrical Steels:MOSES 2019 Volume 1: Fundamentals and basic concepts Energy Engineering: Amazon.es: Anthony Moses, Keith Jenkins, Philip Anderson, Hugh Stanbury: Libros

 

L 11 Electrical Steels: MOSES 2019 Volume 2: Performance and applications (Energy Engineering): Amazon.co.uk: Anthony Moses, Keith Jenkins, Philip Anderson, Hugh Stanbury: 9781785619724: Books

 

L 14 introduction to magnetic materials BUENO 2019- Buscar con Google

L 15 Amazon.es: electrical steels: Libros

L 18 Electrical steels – Buscar con Google

L 20 non oriented electrical steel – Google Académico

L 21 electrical steels for rotating machines – Google Scholar

L 22 magnetic properties of non-oriented electrical steels – Google Scholar

L 23 rotating machines «iron loss model» – Google Scholar

L 24 non-oriented electrical steel «core loss» – Google Scholar

L 25 non-oriented electrical steels «coating technology» – Google Scholar

L 26 A J Moses – Google Scholar

L 27 A J Moses – Google Académico

 

ARTICLES Grain Size

 

L 28 non-oriented electrical steel grain structure – Google Scholar

L 29 non-oriented electrical steel «ferrite grain size» – Google Scholar

 

TEXTURES : Books and Articles (Papers)

 

L 30 textures in electrical steels – Buscar con Google

L 31 textures in non oriented electrical steels – Buscar con Google

L 32 Proceedings of the 6th International Conference on Recrystallization and … – Google Libros

L 33 non-oriented electrical steel texture development – Google Scholar

 

ARTICLES : Strip Casting Technology

 

L 34 non-oriented electrical strip casting technology – Google Scholar

 

ARTICLES  Chemical composition

 

L 35 non-oriented electrical steel effect chemical composition – Google Scholar

L 36 non-oriented electrical steel «aluminum content» – Google Scholar

L 37 non-oriented electrical steel «effect of phosphorus» – Google Scholar

L 38 non-oriented electrical steel effect sulphur content – Google Scholar

L 39 non-oriented electrical steel affect nitrogen content – Google Scholar

L 40 non-oriented electrical steel effect manganese content – Google Scholar

L 41 Electrical Steels for Rotating Machines – Philip Beckley – Google Books

 

CA 010 CHEMICAL COMPOSITION

 

M 01 Influence of chemical composition and processing conditions on the microstructure and magnetic properties of low-carbon Si-Al-Sb electrical steel sheets – ScienceDirect

 

M 02 low-carbon electrical steel – Buscar con Google

M 03 low-carbon Without Silicon electrical steel – Buscar con Google

 

 

GRADES  of non oriented Electrical steels

 

 

M 03A Summary of grades of non-oriented electrical steel (fully processed) [Encyclopedia Magnetica™]

 

M 03B mag_cores_dataAKSteel-very good.pdf

https://es.scribd.com/doc/188689510/Oriented-Bulletin

M 03C How to Select the Right Silicon Steel Grade for Motor Laminations?

M 03D Tech Steel & Materials Essential Guide to Electrical Steels | Tech Steel & Materials

M 03E Introduction of Electrical Steel –

————-

M 03F Nonaging low-carbon transformer steel | Metal Science and Heat Treatment

M 03G Ferrosilicon for electrical steel | Elkem.com

M 03H Influence of chemical composition and processing conditions on the microstructure and magnetic properties of low-carbon Si-Al-Sb electrical steel sheets | Request PDF

 

M 03I Magnetic ageing investigation of bulk low-carbon silicon steel – MJ-Magnetic-Ageing-Claw-Pole-Steel.pdf

 

M 03J Cold Rolled Non-oriented Low Carbon Electrical Steel

M 03K Fundamental Aspect of Texture Formation in Low Carbon Steel

M 03L Driving the electric revolution – Metals Technology Deep Dive – Driving-the-Electric-Revolution-Metals-Tech-Report-Final-Version-February-2024.pdf

 

M 03N Electrical steel for the energy and mobility revolution | thyssenkrupp Steel

 

CA 011 GLOBAL PRODUCTIONS and NEW MILLS

 

N 01 Non-Grain Oriented Electrical Steel Market Size | Growth [2030]

N 02 Non-Grain Oriented Electrical Steel Market Observing the Unseen Ethnography Techniques in Consumer Behavior Research | Taiwan News | Feb. 20, 2024 10:20

 

N 03 Global Non-Grain Oriented Electrical Steel Market Size Study & Forecast, by Type, by Thickness, by Application, and Regional Analysis, 2023-2030

 

N 04 POSCO Completes Construction of Electrical Steel Sheet Plant in Gwangyang

https://www.chemanalyst.com/NewsAndDeals/NewsDetails/posco-completes-construction-of-electrical-steel-sheet-plant-in-gwangyang-24307

 

N 04 Bis Global Non-oriented Electrical Steel Market Research Report 2019

 

N 05 Evolution of Non Grain-oriented Electrical Steel Market – Buscar con Google

N 06 Non-Grain Oriented Electrical Steel Market to Reach USD

N 07 Get a Quote – Non-Grain Oriented Electrical Steel Market Size | Growth [2030]

N 08 Non-Grain Oriented Electrical Steel Market to Reach USD 25.83 Billion by 2030 | with a CAGR of 5.1%

 

N 09 Electric Vehicle Market Size, Share | Growth Analysis [2021-2030]

N 10 Non Grain Oriented Electrical Steel Market-2023 will Revenue to Cross reaching USD 30132.06 million by 2028 Research by Business Opportunities, Top Companies report covers, Market-specific challenges, consumption by Regional data

 

N 11 2023 Non Grain-oriented Electrical Steel Market Demand: Global Share Analysis till 2030 – MarketWatch

 

N 12 Global Non-Grain Oriented Electrical Steel Market Analysis 2030 | 360 Market Update – MarketWatch

 

N 14 World production of NON ORIENTED ELECTRICAL STEELS – Buscar con Google

N 15 Global Electrical Steel (Non-grain oriented (NOES) Market Size, Price Analysis 2030

N 16 Non Grain Oriented Electrical Steel Market Forecast

N 17 Electrical Steel Market Size, Growth Report, Trends 2022-2030

N 18 Non-oriented Electrical Steel Market Size, Share, Trends & Forecast

N 19 Non-Oriented Electrical Steel Market Forecast (2023-2028)

N 21 U. S. Steel Celebrates Launch of New Electrical Steel Line with Ribbon Cutting in Osceola, Arkansas :: United States Steel Corporation (X)

N 22 US Steel launches new electrical steel line at Big River Steel

N 23 ANDRITZ to supply new 6-high cold rolling mill to ArcelorMittal, France

N 24 Electrical steel now China's star product amid global decarbonization drive – Fastmarkets

N 26 New plants of non oriented Electrical Steels – Buscar con Google

N 27 New mills of non oriented Electrical Steels – Buscar con Google

N 28 Manufacturing of non‑grain‑oriented electrical steels: – Buscar con Google

 

CA 012 NON ORIENTED ELECTRICAL STEELS PRODUCED by CVD

 

O 01 chemical vapor deposition in Electrical steels – Buscar con Google

O 01B Si enrichment of conventional electrical steel by means of physical vapour deposition – ScienceDirect

 

O 01C Manufacturing of non-grain-oriented electrical steels: review

https://link.springer.com/article/10.1007/s00170-024-13837-9

O 01D Chemical vapor deposition – Wikipedia

O 01F Advancements in Electrical Steels: A Comprehensive Review of Microstructure, Loss Analysis, Magnetic Properties, Alloying Elements, and the Influence of Coatings

 

O 01G 031-04.pdf JFE REPORT

 

O 01H Innovative processing for improved electrical steel properties – 45f31d5c409cd500f684c65b0934770c8e38.pdf

https://pdfs.semanticscholar.org/7ac1/45f31d5c409cd500f684c65b0934770c8e38.pdf

 

O 01I f1e-002.pdf

O 01J Chemical Vapor Deposition – ST Instruments

O 01K Microstructure and magnetic properties of high silicon electrical steel produced by electron beam physical vapor deposition | Request PDF

 

O 01L Recent Developments in Non-Oriented Electrical Steels

O 01M Basic Investigation of CVD Method for Manufacturing 6.5% Si Steel Sheet

O 02 Chemical Vapor deposition in 6.5% Si Magnetic steel sheets – Search | ScienceDirect.com

 

O 03 Chemical Vapor deposition in electrical steels – Search | ScienceDirect.com

E 03 Equipment and manufacturability issues in chemical vapor deposition processes – ScienceDirect

 

O 04 Chemical Vapor deposition in 6.5% Si electrical steels – Search | ScienceDirect.com

E 04 Chemical Vapor Deposition – ScienceDirect

O 05 chemical vapor deposition in Magnetic Steel Sheets – Buscar con Google

O 05A Microstructure and magnetic properties of high silicon electrical steel produced by electron beam physical vapor deposition – ScienceDirect

 

O 05B Investigation of the magnetic properties of Si-gradient steel sheet by comparison with 6.5%Si steel sheet – 056122_1_online.pdf

 

O 05C 031-02.pdf

O 05D 36_706.pdf

O 05F Stress Dependence of Magnetic Properties in Non-oriented Electrical Steel Sheets | Semantic Scholar

 

O 05G Table Comparison: Physical Vapor Deposition Vs. Chemical Vapor Deposition

O 05H Physical vapor deposition – Wikipedia

O 06 journal of magnetism and magnetic materials 6.5 Electrical steels – Buscar con Google

O 06 44 Recent development of non-oriented electrical steel sheet for automobile electrical devices – ScienceDirect

 

O 06B Review of Electrical Steels with their Properties and Recent Trends for Improvement

O 06C (1) Electrical Steels

O 06D Study of magnetic properties of electrical steels with different Si content considering the effect of temperature | AIP Advances | AIP Publishing

 

O 06E Microsoft Word – Paper_AM4EM_selema_v5 – 2023_Selema_Material Engineering of 3D-Printed Silicon Steel_AAM.pdf

 

O 06F Microstructure & texture evolution and magnetic properties of high magnetic-induction 6.5% Si electrical steel thin sheet fabricated by a specially designed rolling route | Journal of Central South University

 

O 06G Effect of rolling reduction on microstructure, texture and magnetic properties of twin-roll casting non-oriented 6.5 wt% Si electrical steel | ScienceGate

 

O 06G01 Characterization of microstructure, texture and magnetic properties in twin-roll casting high silicon non-oriented electrical steel | ScienceGate

 

O 06G02 Effects of hot rolled microstructure after twin-roll casting on microstructure, texture and magnetic properties of low silicon non-oriented electrical steel | ScienceGate

 

O 06G03 Effect of Secondary Cooling on Non-Oriented Electrical Steel Strips Produced by Twin-Roll Casting Process | ScienceGate

 

O 06G04 Casted Strip Character of Twin-Roll Casted High Strength Non-Oriented Electrical Steel | ScienceGate

 

O 06H Decoupling the effects of texture and composition on magnetic properties of Fe-Si sheet processed by shear deformation (Journal Article) | OSTI.GOV

 

O 06I Effect of Cerium Content on the Magnetic Properties of Non-oriented Electrical Steels

O 06J Effect of Test Temperature on Tensile Behavior of Fe-6.5wt.%Si Alloy As-Cast Strip

O 06K {001}<210> Texture Development by Two-stage Cold RollingMethod in Non-oriented Electrical Steel

 

O 06L Electrical Steels – IspatGuru

O 06M Review Of Magnetic Properties And Texture Evolution In Non-Oriented Electrical Steels – Review Of Magnetic Properties And Texture Evolution In Non-Orient.pdf

 

O 06N Review of Fe-6.5 wt%Si high silicon steel—A promising soft magnetic material for sub-kHz application – Astrophysics Data System

 

O 06O Texture and Magnetic Property of Fe-6.5 wt % Si Steel Strip with Cu-Rich Particles Modification | ACS Omega

 

O 07A chemical vapor deposition libros – Buscar con Google

O 07A01 Chemical vapor deposition: Principles and applications. Edited by M. L. Hitchman and K. F. Jensen, Academic Press, London 1993, 677 pp., hardback, $ 75, ISBN 0‐12‐349 670‐5 – Kodas – 1994 – Advanced Materials – Wiley Online Library

 

O 08A chemical vapor deposition pdf – Buscar con Google (Books)

O 09A chemical vapor deposition – Buscar con Google

O 09A01 Chemical Vapor Deposition – an overview | ScienceDirect Topics

O 10A deposicion quimica de vapor – Buscar con Google

O 11A chemical vapor deposition in electrical steels BOOKS – Buscar con Google

O 11A01 Chemical Vapor Deposition (CVD): Methods and Technologies : Karlsson, Levi: Amazon.es: Libros

 

O 11A03 Chemical Vapour Deposition: Precursors, Processes and Applications : Jones, Anthony C, Hitchman, Michael L: Amazon.es: Libros

 

O 11A04 Handbook of Chemical Vapor Deposition: Principles, Technology and Applications (CVD : PRINCIPLES, TECHNOLOGY, AND APPLICATIONS) : Pierson, Hugh O.: Amazon.es: Libros

 

O 12A01 Principles of Chemical Vapor Deposition – Daniel Dobkin, M.K. Zuraw – Google Libros

 

O 13A CVD2FMPDF – Materials science and process technology series Hugh O Pierson-Handbook of chemical vapor depostion i.e.deposition CVD_principles technology and applications-NoyesPublications_WilliamAn.pdf

 

O 14A Electrical Steel – an overview | ScienceDirect Topics

O 15A Chemical Vapour Deposition: An Integrated Engineering Design for Advanced Materials | SpringerLink

 

 

CA 013 TEXTURES

 

Textures in Introduction and Characterization

 

P 01 Textura cristalográfica – Wikipedia, la enciclopedia libre

P 01A Crystallographic Texture

P 02 Texture (crystalline) – Wikipedia

P 02A aluMATTER: Representing Texture

P 02B Homepage | MTEX

P 02C LaboSoft – the texture analysis software for Windows. Pole Figures Processing, Texture Analysis, ODF calculation with ADC method.

https://labosoft.com.pl/

P 02D Crystallographic Texture

P 03  Li: Evolution of Texture in a 2.8% Si Non-Oriented… – Google Académico

P 03A Texture Development during Final Annealing in Nonoriented Electrical Steels | Scientific.Net

 

P 03B Microstructure and Texture Evolution during Annealing after Temper Rolling of a 2 wt.-% Silicon Electric Steel | Scientific.Net

 

P 03C Evolution of Microstructure, Precipitate and Magnetic Properties with the Different Annealing Temperature in High Grade Nonoriented Electrical Steels | Scientific.Net

 

P 03D 01 Effect of initial grain size on texture evolution and magnetic properties in nonoriented electrical steels – ScienceDirect

 

P 03E ISIJ Int. 56(7): 1256-1261 (2016) – 56_ISIJINT-2015-641.pdf

 

Texture Evolution  and Magnetic Properties under different processes

 

P 03E01 Through process texture evolution and magnetic properties of high Si non-oriented electrical steels – ScienceDirect

 

P 03E02 An investigation on the role of texture evolution and ordered phase transition in soft magnetic properties of Fe–6.5 wt%Si electrical steel – ScienceDirect

 

P 03E03 Texture genetics and magnetic properties of Fe-6.5%Si materials modified with Cu | Journal of Materials Science

 

P 03E04 07 Cube texture evolution and magnetic properties of 6.5 wt% Si electrical steel fabricated by surface energy and three-stage rolling method – ScienceDirect

 

P 03E04A Significant effect of as-cast microstructure on texture evolution and magnetic properties of strip cast non-oriented silicon steel – ScienceDirect

 

P 03E04B Texture evolution and magnetic properties of Fe-4.5 wt% Si electrical steel with ND type columnar grains fabricated by rolling method – ScienceDirect

 

P 03E05 Texture Evolution of a Non-oriented Electrical Steel Cold Rolled at Directions Different from the Hot Rolling Direction | Metallurgical and Materials Transactions A

 

P 03E06 Texture evolution in twin-roll strip cast non-oriented electrical steel with strong Cube and Goss texture – ScienceDirect

 

 

Evolution  of Microstructure with Different  Annealing Temperatures.

 

 

P 03F01 Evolution of microstructure at hot band annealing of ferritic FeSi steels – ScienceDirect

 

P 03F01A Effects by the microstructure after hot and cold rolling on the texture and grain size after final annealing of ferritic non-oriented FeSi electrical steel | AIP Advances | AIP Publishing

 

P 03F01B Texture evolution in Fe–3% Si steel treated under unconventional annealing conditions – ScienceDirect

 

 

Grain Growth and  Texture Changes.

 

 

P 03G01 Local texture changes associated with grain growth | Proceedings of the Royal Society of London. A. Mathematical and Physical Sciences

 

P 03G02 Crystallographic texture change during grain growth | JOM

P 03G03 A theory of texture controlled grain growth—I. Derivation and general discussion of the model – ScienceDirect

 

P 03G04 A theory of texture controlled grain growth—II. Numerical and analytical treatment of grain growth in the presence of two texture components – ScienceDirect

 

P 03G04A Monte Carlo simulation of grain growth in textured metals – ScienceDirect

P 03G05 Texture_Development_During_Grain_Growth.pdf

P 03G06 Grain Growth and Texture Evolution in Thin Films | Scientific.Net ( Ph.D)

P 03G07 Texture Development during Grain Growth in Nonoriented Electrical Steels

P 03G07A Strain-induced grain growth in non-oriented electrical steels – ScienceDirect

P 03G07B An EBSD investigation on the columnar grain growth in non-oriented electrical steels assisted by strain induced boundary migration – ScienceDirect

 

 

Texture, Magnetic Properties and  Annealing Temperature

 

P 03H01 Effect of annealing temperature on magnetic properties of cold rolled high silicon steel thin sheet – ScienceDirect

 

P 03H02 SciELO – Brasil – Effect of the Annealing Temperature on the Structure and Magnetic Properties of 2% Si Steel.

 

P 03H02A Effect of the annealing temperature on the structure and magnetic properties of 3% Si non-oriented steel – ScienceDirect

 

P 03H02B Effect of recrystallization annealing temperature on texture and magnetic properties of 2.97% Si non-oriented silicon steel | Metallurgical Research & Technology

 

 

Texture Grain Size and  Magnetic Properties

 

P 03I01 The effects of grain size on the magnetic properties of nonoriented electrical steel sheets | Journal of Materials Engineering

 

P 03I02 Magnetic properties of decarburized steels: An investigation of the effects of grain size and carbon content | IEEE Journals & Magazine | IEEE Xplore

 

P 03I03 Modeling the effect of grain size and dislocation density on hysteretic magnetic properties in steels | Journal of Applied Physics | AIP Publishing

 

P03I04 Texture Change during Grain Growth in Non-Oriented Electrical Steel | Scientific.Net

 

P 03I05 Texture Evolution during the Processing of Electrical Steels with 0.5% Si and 1.25% Si

 

P 03I06 Preparation of High Silicon Electrical Steel Sheets with Strong {100} Recrystallization Texture by the Texture Inheritance of Initial Columnar Grains | Metallurgical and Materials Transactions A

 

P 03I07 Texture Evolution during Recrystallization in Nonoriented Electrical Steels | Scientific.Net

 

P 03I08 Texture evolution of non-oriented electrical steel analyzed by EBSD and in-situ XRD during the phase transformation from γ to α – ScienceDirect

 

P 03I09 Role of texture before rolling: a research based on texture and magnetic properties of 4.5 wt.% Si non-oriented electrical steel | Journal of Iron and Steel Research International

 

P 03I10 30 Effect of hot band grain size on development of textures and magnetic properties in 2.0% Si non-oriented electrical steel sheet – ScienceDirect

 

 

Textures in Magnetic Steel Sheets

 

P 04 texture in magnetic steel sheets – Google Académico

P04A Rolled texture and magnetic properties of 3% silicon steel | Journal of Applied Physics | AIP Publishing

 

P 04B Texture Control During the Manufacturing of Nonoriented Electrical Steels – Kestens – 2008 – Texture, Stress, and Microstructure – Wiley Online Library

 

P 04B01 Effects of warm temper rolling on microstructure, texture and magnetic properties of strip-casting 6.5 wt% Si electrical steel – ScienceDirect

 

P 04B02 26 Influence of hot deformation on texture and magnetic properties of strip cast non-oriented electrical steel – ScienceDirect

 

P 04C On the Homogeneity and Isotropy of Non-Grain-Oriented Electrical Steel Sheets for the Modeling of Basic Magnetic Properties from Microstructure and Texture | IEEE Journals & Magazine | IEEE Xplore

 

P 04D Correlation Between Microstructure, Texture, and Magnetic Induction in Nonoriented Electrical Steels | IEEE Journals & Magazine | IEEE Xplore

 

P 04E Influence of grain size and texture prior to warm rolling on microstructure, texture and magnetic properties of Fe-6.5 wt% Si steel – ScienceDirect

 

P 04F 16 Effect of texture and grain size on the magnetic flux density and core loss of cold-rolled high silicon steel sheets – ScienceDirect

 

P 04G 25 On the correlation of crystallographic macro-texture and magnetic magnetization anisotropy in non-oriented electrical steel – ScienceDirect

 

P 04I Effect of grain size and magnetic texture on iron-loss components in NO electrical steel at different frequencies – ScienceDirect

 

P 04I01 Correlation between Cutting Clearance, Deformation Texture, and Magnetic Loss Prediction in Non-Oriented Electrical Steels

 

P 04J 28 Effect of crystallographic texture on the bulk magnetic properties of non-oriented electrical steels – ScienceDirect

 

 

Manufacturing Process Crystallographic Textures and Magnetic Properties.

 

 

P 04K01 Texture and Magnetic Properties – Bunge – 1989 – Texture, Stress, and Microstructure – Wiley Online Library

 

P 04K02 Correlation between magnetic properties and crystallographic texture of silicon steel – ScienceDirect

 

P 04K03 The effect of magnetic annealing on crystallographic texture and magnetic properties of Fe-2.6% Si – ScienceDirect

 

P 04K05 Correlation between the Magnetic Properties and the Crystallographic Texture during the Processing of Non Oriented Electrical Steel | Scientific.Net

 

P 05 Amazon.es: Textures in metalic materials:  (Books )

P 06 (18) (PDF) Texture of Metals

P 07 (18) Research methods and influencing factors of interfacial heat transfer during sub-rapid solidification process of strip casting | Request PDF

 

P 08 Textures in NON ORIENTED Electrical Steels – Buscar con Google

P 08A () – Through_process_texture_evolution_and_ma.pdf

P 08B The evolution of cube ({001}<100>) texture in non-oriented electrical steel – ScienceDirect

 

P 08C Review of Magnetic Properties and Texture Evolution in Non-Oriented Electrical Steels

 

P 08E Mechanical properties and crystallographic texture of non-oriented electrical steel processed by repetitive bending under tension – ScienceDirect

 

P 08F MSEM3751014.pdf – Mehdi_2018_IOP_Conf._Ser.:_Mater._Sci._Eng._375_012014.pdf

 

https://iopscience.iop.org/article/10.1088/1757-899X/375/1/012014/pdf

 

P 08G (1) (PDF) Texture Control During the Manufacturing of Nonoriented Electrical Steels

P 08H Evolution of recrystallization texture in non-oriented electrical steels during final annealing – influence of shear stress after cold rolling – IOPscience

 

P 08I Texture Control in Non-Oriented Electrical Steels by Severe Plastic Deformation | Scientific.Net

 

P 08J The evolution of cube ({001}&lt;100&gt;) texture in non-oriented electrical steel – NASA/ADS

 

P 08K Deformation heterogeneity and its effect on the recrystallisation texture of non-oriented electrical steel: Canadian Metallurgical Quarterly: Vol 62 , No 1 – Get Access

 

P 08L Texture Evolution of N O s during Thermomechanical ProcessingTESIS – ProQuest

(Ph.D)

 

P 08M Texture Evolution during Recrystallization and Grain Growth in Non-Oriented Electrical Steel Produced by Compact Strip Production Process – PMC

 

P 08N Texture Optimization for Intermediate Si-Containing Non-oriented Electrical Steel | Journal of Materials Engineering and Performance

 

P 08O SNU Open Repository and Archive: Formation of cube-on-face texture in non-oriented electrical steel

 

P 08P Electrically Induced Cube ({001} < 100 >) Texture in Non-oriented Electrical Steel | Metallurgical and Materials Transactions A

 

P 08Q02 (63) Texture Evolution during the Processing of Electrical Steels with 0.5% Si and 1.25% Si | Marcos de Campos and Ivan Falleiros – Academia.edu

 

P 08Q03 (63) Through process texture evolution and magnetic properties of high Si non-oriented electrical steels | Rodriguez Calvillo and Kim Verbeken – Academia.edu

 

P 08Q04 (63) On the Effect of Texture in Experimental Grades of High-Silicon Electrical Steel | Rodriguez Calvillo – Academia.edu

 

P 08R Texture Development during Grain Growth in Nonoriented Electrical Steels

P 08S Mechanical properties and crystallographic texture of non-oriented electrical steel processed by repetitive bending under tension – Strathprints

 

P 08T Tuan_Definitive_PhD_Thesis.pdf

P 08U Texture Evolution of a Non-oriented Electrical Steel Cold Rolled at Directions Different from the Hot Rolling Direction. | EBSCOhost

 

‪P 08U01 Investigation of the Two-Step Hot Rolling Process of High-Grade Non-oriented Electrical Steel.‎ – ‪Detalles de registro‎ – ‪EBSCO Discovery Service‎

 

‪P 08U02 Integrated Process Simulation of Non-Oriented Electrical Steel.‎ – ‪Detalles de registro‎ – ‪EBSCO Discovery Service‎

 

P 08V (63) Texture and magnetic properties improvement of a 3% Si non-oriented electrical steel by Sb addition | André Barros Cota – Academia.edu

 

P 08W The influence of texture on power losses in nonoriented electrical steels | Journal of Applied Physics | AIP Publishing

 

P 09 texture in electrical steels – Google Académico

P 09A A new model of Goss texture development during secondary recrystallization of electrical steel – ScienceDirect

 

P 10 texture components non-oriented electrical steel sheets – Google Académico

P 10A The Origins of the Goss Orientation in Non‐Oriented Electrical Steel and the Evolution of the Goss Texture during Thermomechanical Processing – Mehdi – 2019 – steel research international – Wiley Online Library

 

P 11 secondary recrystallization electrical steel – Google Académico

 

P 11A The changes of grain boundary character distribution during the secondary recrystallization of electrical steel – ScienceDirect

 

P 11B Orientation selective recrystallization of nonoriented electrical steels | Metallurgical and Materials Transactions A

 

P 11C01 39 Fabrication of high permeability non-oriented electrical steels by increasing 〈0 0 1〉 recrystallization texture using compacted strip casting processes – ScienceDirect

 

P 11C02 31 Evolution of recrystallization microstructure and texture during rapid annealing in strip-cast non-oriented electrical steels – ScienceDirect

 

P 11D Analysis of Micro-texture during Secondary Recrystallization in a Hi-B Electrical Steel – ScienceDirect

 

P 11E Texture of primary recrystallization on nonoriented electrical steel sheet with phase transformation | Journal of Materials Engineering and Performance

 

P 11F Secondary Recrystallization in Non-Oriented Electrical Steels

 

P 11G Athermally enhanced recrystallization kinetics of ultra-low carbon steel via electric current treatment – ScienceDirect

 

P 12 Correlation between the magnetic properties and the crystallographic texture during the processing of non oriented electrical steel – Buscar con Google

 

P 12A Balancing magnetic and mechanical properties of non-oriented electrical steel: correlation between microstructure and properties – University of Portsmouth

 

P 12B Correlation between Magnetic Properties and Chemical Composition of Non-Oriented Electrical Steels Cut through Different Technologies – dac0265b95888918ead0de07f9a0509c3c96.pdf

 

P 12C Correlation between Magnetic Properties and Chemical Composition of Non-Oriented Electrical Steels Cut through Different Technologies – PMC

 

P 12D Recrystallization Behavior of Non-oriented Electrical Steel Sheets after Skew Cold Rolling

 

P 12E Correlation between magnetic properties and crystallographic texture of silicon steel – Astrophysics Data System

 

P 12F The Influence of Rolling Process on the Microstructure, Texture and Magnetic Properties of Low Grades Non-Oriented Electrical Steel After Phase Transformation Annealing

https://www.ams.org.cn/EN/10.11900/0412.1961.2018.00187

 

P 12G Influence of Thermal Processing in High Magnetic Field

on Soft Magnetic Properties and Crystallographic Texture

of Non-Oriented Fe–Si Steels

 

P 12H [PDF] Correlation between magnetic properties and crystallographic texture of silicon steel | Semantic Scholar

 

P 12H01 Correlation Between Microstructure, Texture, and Magnetic Induction in Nonoriented Electrical Steels | Semantic Scholar

 

P 12H02 Through process texture evolution and magnetic properties of high Si non-oriented electrical steels | Semantic Scholar

 

P 12H03 Influence of different kinds of rolling on the crystallographic texture and magnetic induction of a NOG 3 wt% Si steel | Semantic Scholar

 

P 12H04 Quantification of magnetic flux density in non-oriented electrical steel sheets by analysis of texture components | Semantic Scholar

 

P 12H05 Effect of texture and grain size on magnetic flux density and core loss in non-oriented electrical steel containing 3.15% Si | Semantic Scholar

 

P 12H06 On the Homogeneity and Isotropy of Non-Grain-Oriented Electrical Steel Sheets for the Modeling of Basic Magnetic Properties from Microstructure and Texture | Semantic Scholar

 

P 12H06A [PDF] Impact of the interaction of material production and mechanical processing on the magnetic properties of non-oriented electrical steel | Semantic Scholar

 

P 12H07 [PDF] Texture Control During the Manufacturing of Nonoriented Electrical Steels | Semantic Scholar

 

P 12H08 Texture and magnetic properties of non-oriented electrical steels processed by an unconventional cold rolling scheme | Semantic Scholar

 

P 12H08A Skew rolling and its effect on the deformation textures of non-oriented electrical steels | Semantic Scholar

 

P 12H08B [PDF] Effect of Cross-Rolling on Microstructure, Texture and Magnetic Properties of Cold Rolled Non-Oriented Electrical Steels | Semantic Scholar

 

P 12H08C Effect of Annealing Time on the Texture of a 2.8% Si Non-Oriented Electrical Steel After Inclined and Skew Rolling | Semantic Scholar

 

P 12H08D Texture Evolution of a Non-oriented Electrical Steel Cold Rolled at Directions Different from the Hot Rolling Direction | Semantic Scholar

 

P 12H08E Textures of Non-Oriented Electrical Steel Sheets Produced by Skew Cold Rolling and Annealing | Semantic Scholar

 

P 12H08F Gradient Recrystallization Behavior of a Moderate Warm-Rolled Non-Oriented Fe-6.5wt%Si Alloy | Semantic Scholar

 

P 12H08G Thick-Gauge Ultra-High-Strength High-Silicon Non-Oriented Silicon Steel with Balanced Mechanical and Magnetic Properties Controlled by Partial Recrystallization Annealing | Semantic Scholar

 

P 12H08H Effect of annealing treatment prior to cold rolling on the final microstructure and magnetic properties of an ultra-low carbon non-oriented Si–Sb electrical steel | Semantic Scholar

 

P 13 Textures in NON ORIENTED Electrical Steels – Buscar con Google

 

P 14 Model for texture evolution in cold rolling of 2.4 wt.-% Si non-oriented electrical steel: AIP Conference Proceedings: Vol 1896, No 1

 

P 15 Texture Control During the Manufacturing of Nonoriented Electrical Steels

 

P 16 [PDF] Texture Evolution of a Non-oriented Electrical Steel Cold Rolled at Directions Different from the Hot Rolling Direction by Youliang He, Erik J. Hilinski, Jian Li · 10.1007/s11661-015-3136-5 · OA.mg

 

P 16 10.1007/s11661-015-3136-5 – Google Académico

 

P 17 Evolution of recrystallization textures from cold rolling textures in intersticial free steel

 

P 18 textures in non oriented electrical steels – Buscar con Google

 

P 18A Microstructure and Texture Development in a Thin Gauge Non Oriented Electrical Steel by Z.X. Yi, Y.L. Feng, H. Wang, Q.Y. Kuang, Ping Yang, Y.Q. Tang, Z.C. Li :: SSRN

 

P 18B Microstructure and texture evolution of the non-oriented silicon steel during punching – Fang et al. 2022-vf.pdf

 

P 18C Textures of Non-Oriented Electrical Steel Sheets Produced by Skew Cold Rolling and Annealing. | EBSCOhost

 

 

P 18D What Is The Material B20ahvi300_Baosteel Non Oriented Electrical Steel Motor Driven by High-Frequency Permeability Fast Large Amount of Silicon Steel – Oriented Electrical Steel and No Oriented Electrical Steel

 

P 18E Metallurgical Materials Science and Alloy Design – Non-Oriented Electrical Steels

 

P 18F SciELO Brasil – Effect of Cross-Rolling on Microstructure, Texture and Magnetic Properties of Non-Oriented Electrical Steels Effect of Cross-Rolling on Microstructure, Texture and Magnetic Properties of Non-Oriented Electrical Steels

 

P 18G Nonorientedfullyprocessed_datasheet_EN.pdf

P 18H Evolution of microstructure and texture of ultra-thin non-oriented electrical steel manufactured by CSP | Metallurgical Research & Technology

 

P 18I Through process texture evolution of new thin-gauge non-oriented electrical steels with high permeability (2016) | Ning Zhang | 24 Citations

 

P 18J Effect of Tin on the Texture of Nonoriented Electrical Steels – Hou – 2008 – Ceramic Transactions Series – Wiley Online Library

 

P 18K Newly introduced non-oriented electrical steel sheets to JMAG material database and the influence of magnetic properties of non-oriented electrical steels on switched reluctance motor’s characteristics | Simulation Technology for Electromechanical Design : JMAG

 

P 18L Effect of rare-earth Ce on the texture of non-oriented silicon steels

P 18M PowerPoint Presentation – Track-2-Session-10-Jones-Cleveland-Cliffs-Inc.pdf

P 18N [PDF] Influence of electrical steel sheet textures on their magnetization curves | Semantic Scholar

 

P18P Non-oriented Electrical Steel Sheet and Its Application Technology for the Traction Motors of Hybrid/Electrical Vehicles

 

 

CA 014  BIBLIOGRAPHY and PAPERS  01

 

 

A 70 Effect of annealing prior to cold rolling on magnetic and mechanical properties of low carbon non-oriented electrical steels | Armando Salinas Rodriguez – Academia.edu

 

A 71 Study of the Simultaneous Effects of the Hot Band Grain Size and Cold Rolling Reduction on the Structure and Magnetic Properties of Nonoriented 3% Si Steel | Sara Dafé – Academia.edu

 

A 72 High Temperature Oxidation and Its Effects on Microstructural Changes of Hot-Rolled Low Carbon Non-oriented Electrical Steels During Air Annealing | Armando Salinas Rodriguez – Academia.edu

 

A 73 Rapid annealing effects on microstructure, texture, and magnetic properties of non-oriented electrical steel | Alex A Volinsky – Academia.edu

 

A 74 Effect of Heating Rate on the Development of Annealing Texture in Nonoriented Electrical Steels | Sang-Yun Cha – Academia.edu

 

A 75 Correlation between the Magnetic Properties and the Crystallographic Texture during the Processing of Non Oriented Electrical Steel | Kim Verbeken – Academia.edu

 

A 76 Relative effect(s) of texture and grain size on magnetic properties in a low silicon non-grain oriented electrical steel | I. Samajdar – Academia.edu

 

A 77 Influence of initial annealing on structure evolution and magnetic properties of 3.4%SI non-oriented steel during final annealing | André Barros Cota – Academia.edu

 

A 78 Texture Evolution of a 2.8 wt% Si Non-Oriented Electrical Steel during Hot Band Annealing | Mehdi Mehdi – Academia.edu

 

A 79 Effect of Cross-Rolling on Microstructure, Texture and Magnetic Properties of Non-Oriented Electrical Steels | Vijay Hiwarkar – Academia.edu

 

A 80 The Effect of Cross Rolling on Texture and Magnetic Properties of Non Oriented Electrical Steels | E. Aernoudt – Academia.edu

 

A 81 The Effect of Cold Rolling Process on the Microstructure and Texture Evolution in a 1 wt. % Si Non-oriented Electrical Steel | Mohammad Reza Toroghinejad – Academia.edu

 

A 82 Effect of temper rolling on the texture formation and magnetic properties of non-oriented semi-processed electrical steel | Y. Houbaert – Academia.edu

 

A 83 Effect of deformation route and intermediate annealing on magnetic anisotropy and magnetic properties of a 1wt% Si non-oriented electrical steel | Mohammad Toroghinejad and Ali Sonboli – Academia.edu

 

A 84 Through process texture evolution and magnetic properties of high Si non-oriented electrical steels | Kim Verbeken and Rodriguez Calvillo – Academia.edu

 

A 85 Effect of the Hot Band Grain Size and Intermediate Annealing on the Deformation and Recrystallization Textures in Low Silicon Electrical Steels | Marcos de Campos and Ivan Falleiros – Academia.edu

 

A 87 The Effect of Recovery Annealing on the Magnetic and Mechanical Properties of Nonoriented Electrical Steels | Ramon Martin and Thomas Nishikawa – Academia.edu

 

A 88 Study of the Simultaneous Effects of the Hot Band Grain Size and Cold Rolling Reduction on the Structure and Magnetic Properties of Nonoriented 3% Si Steel | Sara Dafé – Academia.edu

 

A 89 Calidades ultrafinas de chapa magnética para motores eléctricos eficientes

 

02 Evolution of recrystallization texture in nonoriented electrical steels – ScienceDirect

 

03 Influence of cutting stress on magnetic field and flux density distribution in non-oriented electrical steels – ScienceDirect

 

04 Influence of the manufacturing process on the magnetic properties of non-oriented electrical steels – ScienceDirect

 

05 Nonoriented Electrical Steels | SpringerLink

 

12 Effect of Cu addition on microstructure, texture and magnetic properties of 6.5 wt% Si electrical steel – ScienceDirect

 

14 Effect of Al content on magnetic properties of Fe-Al Non-oriented electrical steel – ScienceDirect

 

17 Effect of cooling rate on the order degree, residual stress, and room temperature mechanical properties of Fe-6.5wt.%Si alloy – ScienceDirect

 

 

20 Microstructural and textural evolution of double stage cold rolled non-grain oriented electrical steel – ScienceDirect

 

23 Effect of rolling reduction on microstructure, texture and magnetic properties of twin-roll casting non-oriented 6.5 wt% Si electrical steel – ScienceDirect

 

24 The significance of hot rolled microstructure controlled by fine-tuning Al content to texture evolution and magnetic properties of low silicon non-oriented electrical steels – ScienceDirect

 

27 Effect of skin pass rolling reduction rate on the texture evolution of a non-oriented electrical steel after inclined cold rolling – ScienceDirect

 

32 Through process texture evolution of new thin-gauge non-oriented electrical steels with high permeability – ScienceDirect

 

33 Formation of {1 0 0} textured columnar grain structure in a non-oriented electrical steel by phase transformation – ScienceDirect

 

35 Quantification of magnetic flux density in non-oriented electrical steel sheets by analysis of texture components – ScienceDirect

 

36 Texture and magnetic properties of non-oriented electrical steels processed by an unconventional cold rolling scheme – ScienceDirect

 

37 Texture and magnetic properties improvement of a 3% Si non-oriented electrical steel by Sb addition – ScienceDirect

 

38 Microstructure and texture evolution in a non-oriented electrical steel during γ→α transformation under various atmosphere conditions – ScienceDirect

 

40 Microstructure, texture and magnetic properties of strip-cast 1.3% Si non-oriented electrical steels – ScienceDirect

 

41 Effects of rolling temperature on microstructure, texture, formability and magnetic properties in strip casting Fe-6.5 wt% Si non-oriented electrical steel – ScienceDirect

 

42 Effects of hot rolled microstructure after twin-roll casting on microstructure, texture and magnetic properties of low silicon non-oriented electrical steel – ScienceDirect

 

43 Magnetic properties and recrystallization texture of phosphorus-added non-oriented electrical steel sheets – ScienceDirect

 

45 Influence of deformation process on the improvement of non-oriented electrical steel – ScienceDirect

 

46 Formation of cube-on-face texture {0 0 1}〈uv0〉 in a high saturation soft magnetic iron-cobalt-vanadium alloy by controlled phase-transformation γ → α – ScienceDirect

 

47 Non-oriented Si-Fe Sheets – ScienceDirect

 

49 Effect of rare earth elements on magnetic properties of non-oriented electrical steels – ScienceDirect

 

50 Effect of copper precipitates on the stability of microstructures and magnetic properties of non-oriented electrical steels – ScienceDirect

 

52 Investigation of microstructure and properties of strip-cast 4.5 wt% Si non-oriented electrical steel by different rolling processes – ScienceDirect

 

53 Effect of calcium treatment on magnetic properties of non-oriented electrical steels – ScienceDirect

 

56 Influence of cooling rate on iron loss behavior in 6.5 wt% grain-oriented silicon steel – ScienceDirect

 

57 Characterization of a small motor for drones using new Si-gradient steel (JNRFTM) – ScienceDirect

 

58 Newly developed electrical steel for high-frequency use – ScienceDirect

 

59 Recent developments of new soft magnetic materials – ScienceDirect

 

60 Advances in FeSi properties and their interpretation – ScienceDirect

 

61 Magnetic properties and workability of 6.5% silicon steel sheet manufactured in continuous CVD siliconizing line – ScienceDirect

 

62 Effect of annealing prior to cold rolling on magnetic and mechanical properties of low carbon non-oriented electrical steels – ScienceDirect

 

63 Effects of composition and process variables on core loss and hardness of low carbon electrical steels – ScienceDirect

 

64 The effect of thickness of the hot-rolled sheet on the magnetic properties of non-oriented electrical steel – ScienceDirect

 

65 Temperature-dependent modelling of magnetic ageing of FeSi electrical steels – ScienceDirect

 

66 Magnetic ageing investigation of bulk low-carbon silicon steel – ScienceDirect

 

67 Effect of manganese in high silicon alloyed non-oriented electrical steel sheets – ScienceDirect

 

68 Effect of heating rate on properties of non-oriented electrical steel containing 0.4% Si – ScienceDirect

 

69 Investigation of the influence of different cutting procedures on the global and local magnetic properties of non-oriented electrical steel – ScienceDirect

 

01 Steel Times International October 2021 by Quartz Business Media – Issuu

electrical steels nucor new plant electrical steels line – Búsqueda de Google

 

Electrical Steel: Properties, Types, and Applications – Matmatch

 

IEEE Xplore Search Results

 

Electrical Steel | Laser Technologies Inc

 

non-oriented electrical steel: Topics by WorldWideScience.org

 

 

CA 015   BIBLIOGRAPHY and PAPERS  02  2023

 

Q 01 Journal of Magnetism and Magnetic Materials | ScienceDirect.com by Elsevier

 

Q 02 Journal of Magnetism and Magnetic Materials | All Journal Issues | ScienceDirect.com by Elsevier

 

Q 03 Keywords Journal or book title(Journal of Magnetism and Magnetic Materials) Content ID(271615) – Search | ScienceDirect.com

 

Q 03A 05 Influence of hot rolling reduction rate on the microstructure, texture and magnetic properties of a strip-cast Fe-6.5 wt% Si grain-oriented electrical steel – ScienceDirect

 

Q03B 06 Strong 〈001〉 recrystallization texture component in 6.5 wt% Si electrical steel thin sheets by secondary cold rolling and annealing – ScienceDirect

 

Q03C 08 High-strength low-iron-loss silicon steels fabricated by cold rolling – ScienceDirect

 

Q 03D 09 Retaining {1 0 0} texture from initial columnar grains in 6.5 wt% Si electrical steels – ScienceDirect

 

Q 03E 11 Microstructure, texture and precipitate of grain-oriented 4.5 wt% Si steel by strip casting – ScienceDirect

 

Q 03F 15 Effect of test temperature on tensile behavior of Fe-6.5wt.%Si alloy as-cast strip – ScienceDirect

 

Q 03G 13 Fabrication and properties of strip casting 4.5 wt% Si steel thin sheet – ScienceDirect

 

Q 03H Anomalous texture developments, new two-dimensional primary growth modeling, and fully (001)-textured electrical steels – ScienceDirect

 

Q 03I 10 Texture and properties of a new Fe-Si-P solid solution strengthening high strength electrical steels – ScienceDirect

 

Q 03J 18 Effect of annealing on microstructure, texture and magnetic properties of Fe-6.5 wt%Si-0.03 wt%Nb alloy – ScienceDirect

 

Q 03K Decoupling the effects of texture and composition on magnetic properties of Fe-Si sheet processed by shear deformation – ScienceDirect

 

Q 03L 19 Review of Fe-6.5 wt%Si high silicon steel—A promising soft magnetic material for sub-kHz application – ScienceDirect

 

Q 04 Keywords(Review NON ORIENTED ELECTRICAL STEELS) Journal or book title(Journal of Magnetism and Magnetic Materials) Content ID(271615) – Search | ScienceDirect.com

 

Q 04A Magnetic anisotropy reduction of non-grain oriented electrical steel due to different stress relief annealing temperatures – ScienceDirect

 

Q 04B Effects of pulsed laser ablation with various patterns on non-oriented electrical steels magnetic properties – ScienceDirect

 

Q 04C 21 Influence of intermediate annealing temperature on the microstructure and texture of double stage cold rolled non-grain oriented electrical steel – ScienceDirect

 

Q 04D Interrelation of mechanical properties and magneto-mechanical coupling of non-oriented electrical steel – ScienceDirect

 

Q 04E 22 Comparative study on microstructure and texture evolution of low silicon non-oriented electrical steels along one-stage and two-stage cold rolling processes – ScienceDirect

 

Q 04F Magnetostrictive strain monitoring in Non-Oriented Si-Fe steels using a SAW resonator sensor – ScienceDirect

 

Q 04G Finite element level validation of an anisotropic hysteresis model for non-oriented electrical steel sheets – ScienceDirect

 

Q 04H 48 Fabrication of high-performance low silicon non-oriented electrical steels by a new method: Low-finishing-temperature hot rolling combined with batch annealing – ScienceDirect

 

Q 04I 51 Microstructure evolution and strengthening mechanism in thin-gauge non-oriented silicon steel with high strength – ScienceDirect

 

Q 04J The influence of residual stress on flux-barriers of non-oriented electrical steel – ScienceDirect

 

Q 04K An enhanced Energy-Based hysteresis model for electrical steel sheets considering mechanical stress – ScienceDirect

 

Q 04L Influence of shear cutting parameters on the electromagnetic properties of non-oriented electrical steel sheets – ScienceDirect

 

Q 04M A measuring setup for testing the mechanical stress dependence of magnetic properties of electrical steels – ScienceDirect

 

Q 04N Thermodynamic description for magneto-plastic coupling in electrical steel sheets – ScienceDirect

 

Q 04O Experimental characterization of the effect of uniaxial stress on magnetization and iron losses of electrical steel sheets cut by punching process – ScienceDirect

 

Q 04P Low core loss non-oriented silicon steels – ScienceDirect

 

Q 04Q Influence of chemical composition and processing conditions on the microstructure and magnetic properties of low-carbon Si-Al-Sb electrical steel sheets – ScienceDirect

 

Q 04R Influence of Remote Laser Cutting on Magnetic Loss and Mechanical Properties in 0.2 mm Silicon Steel – ScienceDirect

 

Q 04S Experimental and statistical analysis of the effects of punching and laser cutting methods on induction motor efficiency and total magnetic losses in silicon lamination sheets – ScienceDirect

 

Q 05 Keywords VISTO HASTA PAG 4 INCLU (NON ORIENTED ELECTRICAL STEELS TEXTURES) Journal or book title(Journal of Magnetism and Magnetic Materials) Content ID(271615) – Search | ScienceDirect.com

 

Q 05B Microstructure and texture evolution of strip casting 3 wt% Si non-oriented silicon steel with columnar structure – ScienceDirect

 

Q 05C The nanostructure of non-oriented electrical steel sheets – ScienceDirect

 

Q 05E Texture evolution of experimental silicon steel grades. Part I: Hot rolling – ScienceDirect

 

Q 05F Influence of thermomechanical processing on shear bands formation and magnetic properties of a 3% Si non-oriented electrical steel – ScienceDirect

 

Q 05H Effect of temper rolling on texture formation of semi-processed non-oriented steel – ScienceDirect

 

Q 05I Columnar grain growth in non-oriented electrical steels – ScienceDirect

 

Q 05J Preparation of non-oriented silicon steel with high magnetic induction using columnar grains – ScienceDirect

 

Q 05K Reduction of core loss in non-oriented (NO) electrical steel by electroless-plated magnetic coating – ScienceDirect

 

Q 05L Texture development during the production of high Si steel by hot dipping and diffusion annealing – ScienceDirect

 

Q 05M Magnetostriction in non-oriented electrical steels: general trends – ScienceDirect

 

Q 07 Keywords SOLO PAG1 NO TIENE NADA VISTO NON ORIENTED ELECTRICAL STEELS IN MOTORS FOR ELECTRIC CARS) Journal or book title(Journal of Magnetism and Magnetic Materials) Content ID(271615) – Search | ScienceDirect.com

 

Q 08 Keywords VISTO HASTA PG 3 INCLUSIVE (PRODUCTION PROCESS OF NON ORIENTED ELECTRICAL STEELS) Journal or book title(Journal of Magnetism and Magnetic Materials) Content ID(271615) – Search | ScienceDirect.com

 

Q 08A Influence of abrasive waterjet cutting on the magnetic properties of non-oriented electrical steels – ScienceDirect

 

Q 08B Lean non-oriented electrical steel grades – ScienceDirect

 

Q 08C Novel coating technology for non-oriented electrical steels – ScienceDirect

 

Q 08D Advantages, properties and types of coatings on non-oriented electrical steels – ScienceDirect

 

Q 08E Influence of chemistry and hot rolling conditions on high permeability non-grain oriented silicon steel – ScienceDirect

 

Q 08F Impact of grain size distribution on the magnetic deterioration due to cutting of electrical steel sheets – ScienceDirect

 

Q 08G Development of a new generation of high permeability non-oriented silicon steels – ScienceDirect

 

Q 08H Effects of stress relief annealing in NGO steels – ScienceDirect

 

Q 08I Iron loss models: A review of simplified models of magnetization losses in electrical machines – ScienceDirect

 

Q 08J Influence of mechanical and water-jet cutting on the dynamic magnetic properties of NO Fe-Si steels – ScienceDirect

 

Q 08K Effect of annealing temperature and heating rate on the magnetic and mechanical properties of electrical steel – ScienceDirect

 

Q 08L Non-oriented electrical sheets – ScienceDirect

 

Q 08M New electrical steel strip grades in Czechoslovakia – ScienceDirect

 

Q 08N The influence of dew point during annealing on the power loss of electrical steel sheets – ScienceDirect

 

Q 08O Effects of deformation degree on the magnetic properties of soft magnetic steel after heat treatment – ScienceDirect

 

Q 08P High saturation magnetization in Fe–0.4 wt% P alloy processed by a two-step heat treatment – ScienceDirect

 

Q 08Q Effect of stress relief annealing temperature and atmosphere on the magnetic properties of silicon steel – ScienceDirect

 

Q 08R Measuring setup for the investigation of the influence of mechanical stresses on magnetic properties of electrical steel – ScienceDirect

 

Q 09 Keywords VISTO (HIGH SILICON 6.5% NON ORIENTED ELECTRICAL STEELS) Journal or book title(Journal of Magnetism and Magnetic Materials) Content ID(271615) – Search | ScienceDirect.com

 

 

Q 09A Magnetostriction trend of non-oriented 6.5% Si–Fe – ScienceDirect

 

Q 09B Effect of hot rolling parameters on the magnetic properties of a low-silicon ultra-low-carbon steel – ScienceDirect

 

Q 09C Effect of elastic and plastic tensile mechanical loading on the magnetic properties of NGO electrical steel – ScienceDirect

 

Q 09D Magnetic properties of roller-quenched high silicon steel ribbons – ScienceDirect

 

Q 09E Magnetic properties of rapidly quenched silicon-iron ribbons – ScienceDirect

 

Q 09F Recent advances in rapidly solidified soft magnetic materials – ScienceDirect

 

Q 09G Fe3Si surface coating on SiFe steel – ScienceDirect

 

Q 09H Effects of annealing on grain-boundary character distribution and texture evolution in hot-rolled Fe-6.5 wt% Si steel – ScienceDirect

 

Q 09I New developments in technologically important magnetic materials – ScienceDirect

 

Q 09J doi:10.1016/S0304-8853(08)00749-X – 1-s2.0-S030488530800749X-main.pdf

 

Q 10 Keywords VISTO NADA NUEVO (HIGH SILICON 6.5% NON ORIENTED ELECTRICAL STEELS OBTAINED CVD) Journal or book title(Journal of Magnetism and Magnetic Materials) Content ID(271615) – Search | ScienceDirect.com

 

Q 11 Keywords VISTO (LOW CARBON ELECTRICAL STEELS) Journal or book title(Journal of Magnetism and Magnetic Materials) Content ID(271615) – Search | ScienceDirect.com

 

Q 11A Effect of hot band temper rolling strain on the magnetic properties of low-carbon electrical steels – ScienceDirect

 

Q 11B Mechanism study of the residual stress evaluation of low-carbon steels using the eddy current magnetic signature method – ScienceDirect

 

Q 11C Nondestructive characterization of recovery and recrystallization in cold rolled low carbon steel by magnetic hysteresis loops – ScienceDirect

 

Q 11D Development and application of measurement techniques for evaluating localised magnetic properties in electrical steel – ScienceDirect

 

Q 11E Consequences of magnetic aging for iron losses in electrical steels – ScienceDirect

 

Q 11F Investigation of technologies for manufacturing dual-phase magnetic steels for elements of electric machines: A review – ScienceDirect

 

Q 11G Measured and modelled low field relative permeability for dual phase steels at high temperature – ScienceDirect

 

Q 11H Differential eddy current method for full circumferential defect detection of small diameter steel pipe: Numerical analysis and experimental study – ScienceDirect

 

Q 11I Effects of sulfur content and slab reheating temperature on the magnetic properties of fully processed nonoriented electrical steels – ScienceDirect

 

Q 11J Simulation of the HAZ and magnetic properties of laser cut non-oriented electrical steels – ScienceDirect

 

Q 11K Magnetism in carbon-based fiber materials – ScienceDirect

 

Q 11L Electromagnetic sensors for in-situ dynamic microstructure monitoring of recovery and recrystallisation in interstitial free steels – ScienceDirect

 

Q 11M Effect of laser cutting on microstructure and on magnetic properties of grain non-oriented electrical steels – ScienceDirect

 

Q 11N Comparison of cracking sensitivity between high-permeability 1.5 wt% Si steel and 6.5 wt% Si steel in mushy zone – ScienceDirect

 

Q 11O Effect of grain size, deformation, aging and anisotropy on hysteresis loss of electrical steels – ScienceDirect

 

Q 11P Anisotropy of the magnetic losses components in semi-processed electrical steels – ScienceDirect

 

Q 11Q Evaluation of mechanical ductile damage in sheet metal based on low-field magnetic analysis – ScienceDirect

 

Q 11R Steel microstructure – Magnetic permeability modelling: The effect of ferrite grain size and phase fraction – ScienceDirect

 

Q 12 Keywords VISTO (NON ORIENTED ELECTRICAL STEELS) Journal or book title(Journal of Magnetism and Magnetic Materials) Content ID(271615) – Search | ScienceDirect.com

 

Q 12A A new hysteresis simulation method for interpreting the magnetic properties of non-oriented electrical steels – ScienceDirect

 

Q 12B The effect of easy axis misorientation on the low induction hysteresis properties of non-oriented electrical steels – ScienceDirect

 

Q 12C Influence of relaxation phenomena in dynamic magnetization processes on magnetic power losses of non-oriented electrical steel sheets – ScienceDirect

 

Q 12D The relation between the magnetostriction and the hysteresis losses in the non-oriented electrical steels – ScienceDirect

 

Q 12E Effect of the rapid heating on the magnetic properties of non-oriented electrical steels – ScienceDirect

 

Q 12F The study of two different strain paths on the deterioration of the magnetic properties of non-oriented electrical steels – ScienceDirect

 

Q 12G Minimum force model. Effect of crystallographic texture on the magnetostriction and loss characteristics of non-oriented electrical steels – ScienceDirect

 

Q 12H Influence of shearing process on domain structure and magnetic properties of non-oriented electrical steel – ScienceDirect

 

E 12I Magnetic local investigations of non-oriented electrical steels after tensile deformation – ScienceDirect

 

E 12J Induced stresses due to the mechanical cutting of non-oriented electrical steels – ScienceDirect

 

E 12K A method to estimate magnetic induction from texture in non-oriented electrical steels – ScienceDirect

 

Q 13 Electrical Steels – ScienceDirect

 

Scopus preview – Scopus – Document details – High silicon steel sheets realizing excellent high frequency reactor performance

 

Scopus – Search for an author profile

 

Scopus preview – Scopus – Document details – Basic investigation of CVD method for manufacturing 6.5% Si steel sheet

 

Scopus preview – Scopus – Document details – Magnetic properties and workability of 6.5% silicon steel sheet manufactured in continuous CVD siliconizing line

 

Q 14 Search Page | SpringerLink

Q 14A Influence Mechanism of Sn on 2.7%Si-0.5%Al Non-oriented Silicon Steel | JOM

Q 14B Effect of Grain Size Before Cold Rolling on Microstructure, Texture and Magnetic Properties of Ultra-Thin Low-Si Non-oriented Silicon Steel | JOM

 

Q 14C Multi-objective parameter optimization for stacking and sintering of screen-printed magnetic sheets | Production Engineering

 

Q 14D Thick-Gauge Ultra-High-Strength High-Silicon Non-Oriented Silicon Steel with Balanced Mechanical and Magnetic Properties Controlled by Partial Recrystallization Annealing | JOM

 

Q 14E Influence of Inclusions on Magnetic Properties of Al-Killed Non-oriented Silicon Steels | JOM

 

Q 14F Fabrication of Fe-6.7 wt% Si steel via laser powder bed fusion and investigation of the resulting crystallographic texture | Progress in Additive Manufacturing

 

Q 14F01 Dependence of recrystallization behavior and magnetic properties on grain size prior to cold rolling in high silicon non-oriented electrical steel – ScienceDirect

 

Q 14F02 Review of Fe-6.5 wt%Si high silicon steel—A promising soft magnetic material for sub-kHz application – ScienceDirect

 

Q 14F03 Introduction to Magnetic Materials | Wiley Online Books

 

Q 14F04 Effect of ordering on magnetic properties of 6.5-percent silicon-iron alloy | IEEE Journals & Magazine | IEEE Xplore

 

Q 14F05 Microstructure, texture and magnetic properties of strip casting Fe–6.2 wt%Si steel sheet – ScienceDirect

 

Q 14F06 Study of the brittle behaviour of annealed Fe-6.5 wt%Si ribbons produced by planar flow casting – ScienceDirect

 

Q 14G Effect of Sb and Initial Annealing on the Microstructure, Texture, and Magnetic Behavior of Low Silicon Steel Produced by Single-Roll Drive Rolling | Metals and Materials International

 

Q 14I Impact of residual stress evoked by pyramidal embossing on the magnetic material properties of non-oriented electrical steel | Archive of Applied Mechanics

 

Q 14J Prospects of Production and Application of Cold-Rolled Electrical Steel for Magnetic Cores of Rotary Electric Machines | Steel in Translation

 

Q 14J01 e39-013-020.pdf

 

Q 14K Microstructure and Magnetic Properties of 6.5 Wt Pct Si Steel Strip Produced by Simulated Strip Casting Process | Metallurgical and Materials Transactions A

 

Q 14L The Addition of Boron to Melt-Spun Fe−6.5%Si Ribbons | JOM

 

Q 14L01 Uncover the Electric Vehicle Industry: Trends, Innovation & More

 

Q 14L02 Electric Vehicle Industry 2025 MUY IMPORTANTE

 

Q 14L03 Ferromagnetism | IEEE eBooks | IEEE Xplore LIBRO

 

Q 14L04 Handbook of Magnetic Measurements – Slawomir Tumanski – Google Libros

 

Q 14L05 Fabrication of Fe‐6.5wt%Si Ribbons by Melt Spinning Method on Large Scale – Liang – 2015 – Advances in Materials Science and Engineering – Wiley Online Library

 

Q 14M Blanking induced damage in thin 3.2% silicon steel sheets | Production Engineering

 

Q 14N Effect of plastic strain and forming temperature on magnetic properties of low-carbon steel | International Journal of Minerals, Metallurgy and Materials

 

Search Page | SpringerLink 01 Production process of non Oriented magnetic steel sheets

 

Search Page | SpringerLink 02  Production process of non Oriented magnetic steel sheets

 

Q 15 Effect of Superheat on the Initial Solidification Behaviors of 3.5 wt pct Si Non-oriented Electrical Steel During Strip Casting | Metallurgical and Materials Transactions B

 

Q 16 Search Page | SpringerLink TEXTURES

 

Q 16A Microstructure and Magnetic Properties of Fe-4.5% Si Thin-Gauge Non-Oriented Electrical Steel | Metals and Materials International

 

Q 16B Effect of Annealing Stress on the Magnetic Properties of High-Grade Non-oriented Electrical Steel | Metallurgical and Materials Transactions A

 

Q 16C Balancing Magnetic and Mechanical Properties of Non-oriented Electrical Steel: Correlation Between Microstructure and Properties | Acta Metallurgica Sinica (English Letters)

 

Q 16E Some Aspects of Magnetic Anisotropy in Non-Grain-Oriented (NGO) Electrical Steels | JOM

 

Q 16F Effect of sub-micron deformations at opposing strain rates on the micromagnetic behaviour of non-oriented electrical steel | Nature Communications

 

Q 16G Effect of rolling process on magnetic properties of Fe-3.3 wt% Si non-oriented electrical steel | Applied Physics A

 

Q 16H Effect of annealing temperature on magnetic and mechanical properties of twin-roll strip casting Cu-bearing non-oriented electrical steel | Journal of Materials Science

 

Q 16I N 29 Manufacturing ofIMPORTISIMI non-grain-oriented electrical steels: review | The International Journal of Advanced Manufacturing Technology

 

Q 16J Effect of Cooling Rate on Magnetic Properties of Fe-3.3 wt% Si Non-oriented Electrical Steel | Metals and Materials International

 

Q 16K Enhanced magnetic properties and Goss texture development of FeSi3.5 by direct energy deposition | Journal of Materials Science

 

Q 16L Characterization of Fe-6Si Soft Magnetic Alloy Produced by Laser-Directed Energy Deposition Additive Manufacturing | JOM

 

Q 16M Effect of normalization on texture evolution of 0.2-mm-thick thin-gauge non-oriented electrical steels with strong η-fiber textures | Journal of Iron and Steel Research International

 

Q 16N Magnetic field–dependent microstructure evolution and magnetic property of Fe–6.5 Si–0.05 B alloy during solidification | Journal of Materials Research

 

Q 16O New Process for the Goss Texture Formation and Magnetic Property in Silicon Steel Sheet by Hot Asymmetric Rolling and Annealing | Metallurgical and Materials Transactions A

 

 

CA 016   BIBLIOGRAPHY and PAPERS  03  ACADEMIC GOOGLE and GENERAL

 

 

S 01 Non Oriented Electrical Steels – Buscar con Google

 

S 01A Jiangsu Junlicheng Steel Industry Co., Ltd

 

S 01B Silicon steel: oriented silicon steel, non oriented silicon steel, China Silicon steel: oriented silicon steel, non oriented silicon steel Manufacturers, Suppliers, Factory -Shandong Jiate Steel Co., Ltd.

 

S 01B01 Texture Evolution during Recrystallization and Grain Growth in Non-Oriented Electrical Steel Produced by Compact Strip Production Process

 

S 01B02 Texture evolution during skew cold rolling and annealing of a non-oriented electrical steel containing 0.9 wt% silicon | Journal of Materials Science

 

S 01B03 Special texture evolution behavior of strip-cast non-oriented electrical steel combined with in-situ experiment and CPFEM – ScienceDirect

 

S 01B04 Texture Evolution of a 2.8 wt% Si Non-Oriented Electrical Steel during Hot Band Annealing – IOPscience

 

S 01B05 Rapid annealing effects on microstructure, texture, and magnetic properties of non-oriented electrical steel | Metals and Materials International

 

S 01B06 Microstructure and Texture Evolution in Non‐oriented Electrical Steels Along Novel Strip Casting Route and Conventional Route – Liu – 2016 – steel research international – Wiley Online Library

 

S 01B07 Thin electrical steel strip: NO grades for medium to high frequency ranges

 

S 01B08 Performance Analysis of Non–Oriented Electrical Steel with Optimum Texture for High–Speed Traction Motors – IOPscience

 

S 01B09 Non-Oriented Electrical Steel – Guangdong Hongwang Metal New Material Co., Ltd. – page 1.

 

S 01B10 Materials | Special Issue : Low-Loss Nonoriented Electrical Steel Sheet for Energy-Efficient Electrical Drives

 

S 01B10A Characterization Methods along the Process Chain of Electrical Steel Sheet&mdash;From Best Practices to Advanced Characterization

 

S 01B10B Grain Size Influence on the Magnetic Property Deterioration of Blanked Non-Oriented Electrical Steels

 

S 01B10C Influence of Process Parameters on Grain Size and Texture Evolution of Fe-3.2 wt.-% Si Non-Oriented Electrical Steels

 

S 01B10D Material Design for Low-Loss Non-Oriented Electrical Steel for Energy Efficient Drives

 

S 01B11 ThinNOFP.pdf

https://perso.uclouvain.be/ernest.matagne/ELEC2311/T2006/ThinNOFP.pdf

 

S 01B12 Electrical steel sheet | Steel sheets | Products | Nippon Steel & Sumitomo Metal Corporation

 

S 01B12A D005je_無方向性電磁鋼帯 NON-ORIENTED ELECTRICAL STEEL SHEETS – D005je.pdf

https://www.nipponsteel.com/product/catalog_download/pdf/D005je.pdf

 

S 02 nonoriented electrical steels – Google Académico

 

S 02A Nonoriented Electrical Steels | JOM

 

S 02B Recent developments of non-oriented electrical steel sheets | IEEE Journals & Magazine | IEEE Xplore

 

S 02C Nonoriented electrical steel sheet with low iron loss for high-efficiency motor cores | IEEE Journals & Magazine | IEEE XploreS

 

S 02D Skew rolling and its effect on the deformation textures of non-oriented electrical steels

 – ScienceDirect

 

S 02E Investigation of Total Losses of Non-Oriented Electrical Steels

 

S 03 magnetic properties of non-oriented electrical steels – Google Académico

 

S 03A How non-conventional machining affects the surface integrity and magnetic properties of non-oriented electrical steel – ScienceDirect

 

S 03B The Influence of Cutting Technology on Magnetic Properties of Non-Oriented Electrical Steel&mdash;Review State of the Art

 

S 03C Effect of hot-band grain size on magnetic properties of non-oriented electrical steels | IEEE Journals & Magazine | IEEE Xplore

 

S 04 grain size electrical steel – Google Académico

 

S 04A The effects of grain size on the magnetic properties of fully processed, continuous-annealed low-carbon electrical steels | IEEE Journals & Magazine | IEEE Xplore

 

S 04B Investigation of the influence of global stresses and strains on the magnetic properties of electrical steels with varying alloying content and grain size | IEEE Conference Publication | IEEE Xplore

 

S 04C The effect of grain size before cold rolling on the magnetic properties of thin-gauge non-oriented electrical steel – IOPscience

 

S 04D Effect of initial grain size on microstructure, texture and magnetic properties of non-oriented electrical steel – ScienceDirect

 

S 04D Effect of initial grain size on microstructure, texture and magnetic properties of non-oriented electrical steel – 1-s2.0-S2238785424015047-main.pdf

 

S 04E Rapid heating effects on grain-size, texture and magnetic properties of 3% Si non-oriented electrical steel | Bulletin of Materials Science

 

 

S 05 texture components non-oriented electrical steel sheets – Google Académico

 

S 05A Effects of initial microstructure and texture on microstructure, texture evolution and magnetic properties of non-oriented electrical steel – ScienceDirect

 

S 05B Comparisons of {100} texture improvement and formability in hot-rolled non-oriented electrical steel by austenite–ferrite phase transformation and shear deformation | Journal of Iron and Steel Research International

 

S 05C Microsoft Word – 1–Texture Improvement of 3% Si Non-Oriented Electrical Steel.doc – 01.PDF

 

S 06 recrystallized texture electrical steel – Google Académico

 

S 06A Disparity in recrystallization of α- & γ-fibers and its impact on Cube texture formation in non-oriented electrical steel – ScienceDirect

 

S 06A01 Formation of a near {001}〈110〉 recrystallization texture in electrical steels – ScienceDirect

 

S 06B Recrystallization Behavior of Hot‐Rolled Microstructure with Texture Gradient and Texture of Final Sheet in Thin‐Gauge Electrical Steel – Tang – 2022 – steel research international – Wiley Online Library

 

S 06C Strong {1 0 0}〈0 1 2〉-{4 1 1}〈1 4 8〉 recrystallization textures in heavily hot-rolled non-oriented electrical steels – ScienceDirect

 

S 06D Effect of rolling methods on microstructure, recrystallization texture and magnetic properties in a Fe–2.5%Si–0.52%Al non-oriented electrical steel – ScienceDirect

 

S 06E 110699.dvi – 柱状晶对Fe-3_Si电工钢再结晶织构演变规律的影响-2.pdf

 

S 07 semi-processed electrical steels – Google Académico

 

S 07A Magnetic aging anisotropy of a semi-processed non-oriented electrical steel – ScienceDirect

 

S 07B Decarburization Kinetics during Annealing of a Semi-processed Electrical Steel

 

S 07C SciELO Brasil – Effect of Aluminium Addition on the Magnetic Properties of a Semi-Processed Electrical Steel Effect of Aluminium Addition on the Magnetic Properties of a Semi-Processed Electrical Steel

 

S 07D Cost reduction by application of semi-processed steel in the production of electrical motors – ScienceDirect

 

S 07E Effects of manganese and sulfur contents and slab reheating temperatures on the magnetic properties of non-oriented semi-processed electrical steel sheet – ScienceDirect

 

S 07E01 Effects of titanium on magnetic properties of semi-processed non-oriented electrical steel sheets | Journal of Materials Science

 

S 07F Orientation dependence of stored energy of cold work in semi-processed electrical steels after temper rolling – ScienceDirect

 

S 07G Microstructure, texture and magnetic properties of the semi-processed strip-cast non-oriented electrical steel | Metallurgical Research & Technology

 

S 07H Effect of Cold Rolling Prior to Annealing on the Grain Size-Energy Losses Relationship in a Low Carbon Grain Non-Oriented Semi-Processed Electrical Steel

 

S 07I Influence of Thickness on Magnetic and Microstructural Properties in Electrical Steels Semi-Processed of Low Efficiency | Scientific.Net

 

S 07J Basic_classification_and_processing_of_e.pdf

 

S 07K Influence of wire electrical discharge machine cutting parameters on the magnetization characteristics of electrical steel laminations – ScienceDirect

 

S 07L Handbook Of Electrical Steel – Goran Engdahl – Google Libros

 

S 07M Effect of temper rolling and subsequent annealing on texture development and magnetic permeability of semi-processed electrical steel with 2.3 wt.% Si

 

S 07N Effect of Hot Band Annealing on Microstructure of Semi-Processed Non-Oriented Low Carbon Electrical Steels | MRS Online Proceedings Library (OPL) | Cambridge Core

 

S 07O Evolution of Power Losses in Bending Rolled Fully Finished NO Electrical Steel Treated under Unconventional Annealing Conditions

 

S 07P Characterization of the Mechanical and Microstructural Properties of Thin Non-Orientated Electrical Steel Sheets

 

S 07Q Magnetic losses evolution of a semi-processed steel during forced aging treatments – ScienceDirect

 

S 07R Electrical Steels for Rotating Machines – Philip Beckley – Google Libros

 

S 07S Correlation between Magnetic Properties and Chemical Composition of Non-Oriented Electrical Steels Cut through Different Technologies

 

S 07S01 The influence of cutting technique on the magnetic properties of electrical steels – ScienceDirect

 

 

S 07U Evolution of Microstructure and Texture in Low-Carbon Grain Non-Oriented Electrical Steels Processed from Solid-State Columnar Microstructures | Metallography, Microstructure, and Analysis

 

S 07V Development of full-processed non-oriented electrical steel in a CSP line

 

S 08 non-oriented electrical steels grain growth phenomena – Google Académico

 

S 08A Correlation of grain growth phenomena with magnetic properties in non – oriented electrical steels – IOPscience

 

S 08B Columnar grain growth during annealing prior to cold rolling of non-oriented electrical steels – ScienceDirect

 

S 08C Effect of Tensile Deformation on the Grain Size of Annealed Grain Non-Oriented Electrical Steel | MRS Online Proceedings Library (OPL) | Cambridge Core

 

S 08D Abnormal grain growth with preferred orientation in non-oriented silicon steel: a quasi-in situ study | Journal of Materials Science

 

S 08E The influence of microstructural features of individual grains on texture formation by strain-induced boundary migration in non-oriented electrical steels | Journal of Materials Science

 

S 08F Tracking the Evolution of Annealing Textures from Individual Deformed Grains in a Cross-Rolled Non-oriented Electrical Steel | Metallurgical and Materials Transactions A

 

S 08G Effect of Heating Rate on Microstructure Evolution and Magnetic Properties of Cold Rolled Non-Oriented Electrical Steel | Journal of Iron and Steel Research International

 

S 08H Modelling the evolution of recrystallization texture for a non-grain oriented electrical steel – ScienceDirect

 

S 09 low carbon electrical steels – Google Académico

 

S 09A Effect of Hot Band Annealing Temperature on the Magnetic Properties of Low-carbon Electrical Steels

 

S 09B Desulphurisation Process in RH Degasser for Soft-killed Ultra- low-carbon Electrical Steels

 

S 09C A Mathematical Model of Desulphurization Kinetics for Ultra-low-sulfur Steels Refining by Powder Injection during RH Processing

 

S 09D Review of Electrical Steels with their Properties and Recent Trends for Improvement

 

S 09E Magnetic ageing characteristics of low silicon electrical steels – ScienceDirect

 

S 09F A Review of Electrical Steels – ProQuest

 

S 09G Innovative processing for improved electrical steel properties – 1136-Article text (mandatory)-1153-1-10-20110119.pdf

 

S 09H MFINT – Kutsova_Kotova.pdf

 

S 09I Effect of composition and impurities on the magnetic properties of low-carbon electrical steels | Journal of Materials Science Letters

 

S 09J Magnetic properties of low loss non-oriented electrical steel sheet of thin gauge and at high frequencies – IOPscience

 

S 09K Application status and prospect of low carbon technology in iron and steel industry

 

S 09K01 Low-carbon green development path and practice of the iron and steel industry

 

S 09K02 Recent Status of Production, Administration Policies, and Low-Carbon Technology Development of China&rsquo;s Steel Industry

 

S 09L Decarburization_and_grain_growth_kinetic.pdf

 

S 09M Effect of impurities on the microstructure and mechanical properties of a low carbon steel – Jiaqi Duan, Didier Farrugia, Claire Davis, Zushu Li, 2022

 

S 10 semi-processed electrical steel decarburization kinetics – Google Académico

 

S 10A Microsoft Word – COBEM2007-0539.doc – COBEM2007-0539.pdf

 

S 10B Modelling Decarburization in Electrical Steels – Soenen – 2005 – steel research international – Wiley Online Library

 

S 10C Variation in structure and magnetic properties during decarb-annealing of electrical steel – ScienceDirect

 

S 10D SciELO Brasil – Kinetics of Magnetic Ageing of 2%Si Non-oriented Grain Electrical Steel Kinetics of Magnetic Ageing of 2%Si Non-oriented Grain Electrical Steel

 

S 10E Heat Treating and Surface Engineering: Proceedings of the 22nd Heat Treating … – ASM Heat Treating Society. Conference and Exposition – Google Libros

 

S 10F ATMOSPHERES FOR ANNEALING ELECTRICAL STEELS – Document – Gale Academic OneFile

 

S 10G Kinetics of columnar abnormal grain growth in low-Si non-oriented electrical steel – ScienceDirect

 

S 10H The influence of annealing conditions on the internal oxidation and magnetic properties of silicon‐aluminum bearing electrical steels | Journal of Applied Physics | AIP Publishing

 

S 10H01 The effect of antimony on internal oxidation and magnetic properties of Si-Al electrical steels | IEEE Journals & Magazine | IEEE Xplore

 

S 10H02 Effects of internal oxidation and nitridation on the magnetic properties of non‐oriented electrical steels | Journal of Applied Physics | AIP Publishing

 

S 10I Modelling Decarburization in Electrical Steels | Request PDF

 

S 10J (PDF) MODELING DESCARBURISATION PROCESS OF HEAT TREATMENT OF ELECTRICAL STEELS

 

S 10K steiner.pdf

http://mit.imt.si/izvodi/mit016/steiner.pdf

 

S 10L Effect of Hot Band Annealing on the Microstructure and Mechanical Properties of Low Carbon Electrical Steels | MRS Online Proceedings Library (OPL) | Cambridge Core

 

S 10M An Approach to Predict the Depth of the Decarburized Ferrite Layer of Spring Steel Based on Measured Temperature History of Material during Cooling

 

S 11 initial grain size nonoriented electrical steels – Google Académico

 

S 11A Precipitates in electrical steels – ScienceDirect

 

S 11B The Influence of Normalization Temperatures on Different Texture Components and Magnetic Properties of Nonoriented Electrical Steels – Wu – 2021 – steel research international – Wiley Online Library

 

S 12 final microstructure non-oriented electrical steel sheets – Google Académico

 

S 12A Microstructure and mechanical property connections for a punched non-oriented electrical steel lamination – ScienceDirect

 

S 12B Anisotropic properties of non‐oriented steel sheets – Chwastek – 2013 – IET Electric Power Applications – Wiley Online Library

 

S 12C Effects of slab reheating temperature and hot rolling process on microstructure, texture and magnetic properties of 0.4% Si non-oriented electrical steel – ScienceDirect

 

S 12D Analysis and prevention of edge cracking phenomenon during hot rolling of non-oriented electrical steel sheets – ScienceDirect

 

S 12E The Combined Effects of Plastic Deformation and Two-Phase Annealing, Applied to Hot-Rolled Bands, on the Final Microstructure and Magnetic Properties of Non-oriented Electrical Steel Sheets – s11661-023-07242-2.pdf

 

S 12F Microstructure and Texture of 0.75%Si Non-oriented Electrical Steel Fabricated by Strip Casting Process | Metallography, Microstructure, and Analysis

 

S 12G Effect of Manufacturing on Microstructure and Magnetic Properties of Non-Oriented Electrical Steel – ProQuest

 

S 13 recovery annealing nonoriented electrical steels – Google Académico

 

S 13A Effect of pre-recovery annealing on recrystallisation behaviour of strip-cast non-oriented electrical steel: Materials Science and Technology: Vol 39, No 10

 

S 13B The Effect of Recovery Annealing on the Magnetic and Mechanical Properties of Nonoriented Electrical Steels | IEEE Journals & Magazine | IEEE Xplore

 

S 13C Effect of Partial Recrystallization Annealing on Magnetic Properties and Mechanical Properties of Non-Oriented Silicon Steel

 

S 13D Influence of stress relief annealing temperature on the cutting edge microstructure and on the recovery of magnetic properties of grain oriented electrical steel – ScienceDirect

 

S 13E Reducing Power Losses by Optimizing Cooling in Final Annealing of Non-Oriented Electrical Steel

 

S 13F Ultrastrong {100} texture in twin-roll strip cast non-oriented electrical steel through two-step annealing – ScienceDirect

 

S 13F01 Enhanced {100} Recrystallization Texture in Strip‐Cast Nonoriented Electrical Steel by Two‐Stage Annealing – Jiao – 2023 – steel research international – Wiley Online Library

 

S 13G Effect of Annealing on the Magnetic Properties of a Cold Rolled Non-Oriented Grain Electrical Steels | MRS Online Proceedings Library

 

S 13H Evolution and Interaction of the Microstructure and Texture at the Different Processing Steps for Ferritic Nonoriented Electrical Steels | IEEE Journals & Magazine | IEEE Xplore

 

S 13I the influence of annealing temperature on the magnetic properties of cryo-rolled non-oriented electrical steel

 

S 13I01 Effect of recrystallization annealing temperature on microstructure, texture and magnetic properties of non-oriented silicon steel produced by strip casting – ScienceDirect

 

S 14 electrical steels magnetic aging – Google Académico

 

S 14A On predicting the extent of magnetic aging in electrical steels – ScienceDirect

 

S 14B Magnetic Aging Effect Losses on Electrical Steels | IEEE Journals & Magazine | IEEE Xplore

 

S 14C Kinetics of magnetic aging of low-carbon electrical steel | Metal Science and Heat Treatment

 

S 14D Magnetic Aging of Non-Oriented Electrical Steels Subjected to Thermal Operating Conditions Encountered in Electrical Mobility Applications – JCGE_LSaleh.pdf

 

S 14E Higher strength steels for magnetic applications in motors – Tuomo Nyyssönen, Bevis Hutchinson, Arvid Broddefalk, 2021

 

S 14F Effect of Static Stress and Magnetic Ageing on Iron Losses for Non Oriented and Grain Oriented Electrical Steels – ProQuest

 

S 14G Iron Loss Deterioration by Shearing Process in Non-Oriented Electrical Steel with Different Thicknesses and Its Influence on Estimation of Motor Iron Loss

 

S 14I A study of the kinetics of magnetic aging in steels | IEEE Journals & Magazine | IEEE Xplore

 

S 14J Evaluation of magnetic aging in transformers and electrical machines cores during operation (Technical Report) | ETDEWEB

 

S 14K Detrimental effect of oxidation on magnetic properties of nonoriented electrical steel sheet | Journal of Applied Physics | AIP Publishing

 

S 14L Study on the influence of thermal aging on the mechanical and magnetic properties of ferritic steel – IOPscience

 

S 14M The influence of cooling rate on microstructure and magnetic properties of cast Fe-6.5wt%Si steel – IOPscience

 

 

CA 017   BIBLIOGRAPHY and PAPERS  04 GENERAL

 

R 01 Electrical steel strip for electromagnetic components

 

R 02 Non-oriented Electrical Steel Market Size, Growth and Analysis Report – 2033

 

R 03 (PDF) Developments in the Field of Nonoriented Electrical Steels Over the Last Years

 

R 04 (PDF) Role of Hot Rolling inPASADO Microstructure and Texture Development of Strip Cast Non-Oriented Electrical Steel

 

R 05 (PDF) Texture evolution in twin-roll strip cast non-oriented electrical steel with strong Cube and Goss texture

 

R 06 (PDF) Dependence of recrystallization behavior and magnetic properties on grain size prior to cold rolling in high silicon non-oriented electrical steel

 

R 07 (PDF) Effect of Cold Rolling Process on Microstructure, Texture and Properties of Strip Cast Fe-2.6%Si Steel

 

R 08 (PDF) The Origin of the Cube ({001}) Texture in Non-oriented Electrical Steel Sheets

 

R 09 Effect of pre-recovery annealing on recrystallisation behaviour of strip-cast non-oriented electrical steel | Request PDF

 

R 10 Ultrastrong {100} texture in twin-roll strip cast non-oriented electrical steel through two-step annealing | Request PDF

 

R 11 China B50A700 Non Grain Oriented Electrical Steel Suppliers, Manufacturers, Factory – Free Sample – GNEE

 

R 12 Integrated Process Simulation of Non-Oriented Electrical Steel – PubMed

 

R 13 Manufacturing of non-grain-oriented electrical steels: review

 

R 14 Manufacturing of non-grain-oriented electrical steels: review – University of Strathclyde

 

R 15 Silicon steel lines – SMS group GmbH

 

R 16 Influence of the manufacturing process on the magnetic properties of non-oriented electrical steels – PDF Free Download

 

R 16A Influence of the cutting process on the magnetic properties of non-oriented electrical steels – PDF Free Download

 

R 16B The influence of cutting technique on the magnetic properties of electrical steels – PDF Free Download

 

R 16C Effect of initial grain size on texture evolution and magnetic properties in nonoriented electrical steels – PDF Free Download

 

R 16D Influence of welding and sticking of laminations on the magnetic properties of non-oriented electrical steels – PDF Free Download

 

R 16E The effects of stress relief annealing on the magnetic properties of cut laminations and assembled cores produced from nonoriented electrical steel – PDF Free Download

 

R 16F Effect of stress relief annealing temperature and atmosphere on the magnetic properties of silicon steel | Request PDF

 

R 16G Influence of mechanical and water-jet cutting on the dynamic magnetic properties of NO Fe-Si steels – PDF Free Download

 

R 16H Effect of grain size, deformation, aging and anisotropy on hysteresis loss of electrical steels | Request PDF

 

R 16I The effect of silicon on the grain size and the tensile properties of low carbon steels – ScienceDirect

 

R 16J Relative effect(s) of texture and grain size on magnetic properties in a low silicon non-grain oriented electrical steel | Request PDF

 

R 16K Effects of Sn Addition on Core Loss and Texture of Non-Oriented Electrical Steels – PDF Free Download

 

 

CA 017A   BIBLIOGRAPHY and PAPERS  05 NEW MILLS and DEGASSING OF ELECTRICAL STEELS

 

 

R 16L Thyssenkrupp starts new electrical steel processing line – EUROMETAL

 

R 16M ArcelorMittal to move forward with construction of a new, world-class electrical steel manufacturing facility | ArcelorMittal

 

R 16N Electrical steels – Industry

 

R 16O ArcelorMittal&apos;s New Alabama Mill: A Game-Changer for U.S. Electrical Steel Production

 

R 16P Non-Grain Oriented Electrical Steel Market to Reach USD 27.92 Billion by 2032, Fueled by Growing Demand for Electrical Equipment | SNS Insider

 

R 16Q Non Grain Oriented Electrical Steel Market Rewriting Long Term

 

R 16S Top 15 Non-Grain Oriented Electrical Steel Manufacturers [2024]

 

R 16T JFE Steel resumes electrical steel sheet production at Kurashiki

 

R 16U Spain unlikely to take serious hit from US steel tariffs

 

R 16V Non-Grain Oriented Electrical Steel Market Know Faster Growing Segments Now | Taiwan News | Aug. 20, 2024 08:07

 

R 16X Silicon steel lines – SMS group GmbH

 

R16Y Grain/Non-grain Oriented Electrical Steel,Silicon Steel Sheet/Strip/Coils Supplier

 

R 16Y01 Customized Magnet Material,Magnet Material Supplier,Magnet Material Distributor

 

R 16Z Electrical steel production – Buscar con Google

 

R 17 Electrical steels – ArcelorMittal Europe – Flat Products

 

R 18 New electrical steel production unit in Mardyck complements St-Chély, triples ArcelorMittal capacity

 

R 19 latest news in production of non oriented electrical steels – Buscar con Google

 

R 19A MEPS’s latest global steel production and capacity round-up

 

R 19B ArcelorMittal to move forward with construction of a new, world-class electrical steel facility in Alabama

 

R 19C JFE Steel’s Kurashiki Facility Resumes Production of Electrical Steel Sheet After Completing First Phase of Capacity Expansion|JFE Steel Corporation

 

R 19C01 JFE Steel formally decides to further expand electrical steel sheet capacity of Kurashiki facility|JFE Steel Corporation

 

R 20 Non-Grain Oriented Electrical Steel Market By Application Report – NEWS CHANNEL NEBRASKA

 

R 21 China&apos;s non-grain oriented electrical steel market rise amid India&apos;s anti-dumping investigation – Fastmarkets

 

R 22 A Review on the Effect of Electrical Steel Manufacturing Processes on the Performance of Electric Machines

 

R 23 INFORMATION AND PROCEDURES OF NON – ORIENTED ELECTRICAL STEELS STEELMAKING REVIEW 02 English – Iron and Steelmaking

 

R 24 Electrical Steel Market Size, Growth & Industry Analysis [2032]

 

R 25 Shifts and Breakthroughs in Electrical Steel Industry

 

R 25A Electrical Steel Market Size, Share & Trends Analysis, 2031

 

R 26 Electrical Steel Market Size, Share & Growth Report, 2030

 

R 26A Electrical Steel Market Size & Outlook, 2030

 

R 27 Electrical steel: electrification&apos;s forgotten material – CRU Group

 

R 28 SIJ Acroni: leading the charge in advanced electrical steel production – GreenSteelWorld.com

 

R 29  Basic classification and processing of electrical steels

 

R 30 Electrical steel production in US | CWIEME Berlin

 

R 31 7 Best Electrical Steel Manufacturers – Verified Market Research

 

R 31A Report Enquiry For Download Sample – Verified Market Research

 

R 32 Electrical Steel Companies – Top Industry Manufacturers 2024

 

R 33 U.S. Electrical Steel Industry Report 2022-2032

 

R 34 Our advanced E-Si® technologies to produce the electrical steel for tomorrow&apos;s e-mobility

https://johncockerill.com/en/press-and-news/news/advanced-e-si-technologies-electrical-steel-production/

 

R 34A Steel strip processing – John Cockerill – John Cockerill

 

R 35 Electrical steel market size worldwide 2020 | Statista

 

R 36 Electrical Steel – an overview | ScienceDirect Topics

 

R 36A Encyclopedia of Materials: Metals and Alloys | ScienceDirect

 

R 37 (PDF) Correlation Between Microstructure, Texture, and Magnetic Induction in Nonoriented Electrical Steels

 

 

R 39 thyssenkrupp Commissions New NGO Annealing, Isolating Line – Association for Iron & Steel Technology

 

R 39A Investment in the future for electric mobility – thyssenkrupp takes a new high-tech annealing and isolating line into operation in Bochum

 

R 41 ArcelorMittal Greenlights Alabama Electrical Steel Plant; Nears Completion of EAF – Association for Iron & Steel Technology

 

R 42 R 16O.01 Brief – SMS_group_press_release_-_250129__thyssenkrupp_Steel_Europe_-_EN.pdf

 

R 55 ANDRITZ Selected to Supply New U.S. Electrical Steel Facility – Association for Iron & Steel Technology

 

R 55A ANDRITZ selected by ArcelorMittal as supplier for new electrical steel facility in the USA

 

R 55B ANDRITZ selected by ArcelorMittal as supplier for new electrical steel facility in the USA | Industry USA

 

R 56 The Effect of Cold Rolling Process on the Microstructure and Texture Evolution in a 1 wt. % Si Non-oriented Electrical Steel

 

R 57 ANDRITZ to Supply Silicon Steel Processing Plant to ArcelorMittal/China Oriental Group – Association for Iron & Steel Technology

 

R 57A ArcelorMittal/China Oriental Group JV orders high-end silicon steel processing plant from ANDRITZ

 

R 57B ArcelorMittal-China Oriental JV orders silicon steel plant from Andritz

 

R 58 O 3 (1) (PDF) Manufacturing of non-grain-oriented electrical steels: review

 

 

DEGASSING OF ELECTRICAL STEELS  2025

 

Although degassification  processes in steelmaking are used for the manufacture of grain-oriented magnetic sheet, it is foreseeable that, given the growing importance of electric motors in the transport sector and many others, these degassification techniques will also be used in the future to further improve the magnetic characteristics of this steel.

 

R 43A JPH07138633A – Production of extra-low carbon steel by vacuum degassing – Google Patents

 

R 44 M 03O Liquid processing of silicon steels using the converter-ladle furnace-circulation degasser route

 

R 45 a126z1p087.pdf

http://przyrbwn.icm.edu.pl/APP/PDF/126/a126z1p087.pdf

 

R 46 VACUUM DEGASSING OF STEEL PART 1 1958 – M38-1-47-1959-eng.pdf

 

R 47 P 11C Improving the Magnetic Properties of Non-Oriented Electrical Steels by Secondary Recrystallization Using Dynamic Heating Conditions

 

R 48 Vacuum Degasser.pdf

 

R 49 Vacuum Degassing Applications | KNF Neuberger – Application_Note_Degassing.pdf

 

R 50 The principle of our vacuum degassers is based on Henry&apos;s law – Spirotech

 

R 51 Resource-saving and sustainable production of high-quality steel by enhanced on-line control of stirring efficiency in vacuum degassing (SUSPRISE Joint Call) – Factory of Tomorrow

 

R 51A Microsoft PowerPoint – STEELVDCON_Susprise_Internal_workshop_Presentation.ppt – 080923_susprise_steelvdcon_internal_workshop_presentation.pdf

 

R 52 lecture-25.pdf

 

R 53 Condition Diagnostic Rules for Hot Strip Mill Pinch Rolls Using Vibration Signals – 2-Theoretical Analysis and Technology Development of Dehydrogenation in Vacuum Degasser.pdf

 

R 54 6103.pdf

https://www.nipponsteel.com/en/tech/report/nsc/pdf/6103.pdf

 

 

VACUUM DEGASSING SYSTEMS 2025

 

 

Vacuum Degassing – Aceros URSSA

Search – SMS group GmbH

Secondary metallurgy – SMS group GmbH

V Steel Degassing – Edwards Vacuum

Desgasificación de acero – Edwards Vacuum

V D 01 Vacuum Degasser (VD/VTD/VOD) | Tenova

RH Vacuum Degasser | Tenova

Products › Ironmaking and steelmaking › Vacuum Treatment Plants Since the early ‹ Danieli

V Aceros Arequipa orders vacuum tank degasser from SMS group – SMS group GmbH

Vacuum Degassing of Steel

Steel Degassing – Leybold

Siemens to supply RH Vacuum Degassing Plant for Rourkela Steel Works – Industry.Guru

Siemens to supply RH vacuum degassing plant for AHMSA

Vacuum equipments for steel industry – Buscar con Google

 

 

 

CA 020   BIBLIOGRAPHY and PAPERS  06  ROLLING ANNEALING and MAGNETIC PROPERTIES

 

 

T 001 Flash Annealing in a Cold-Rolled Low Carbon Steel Alloyed with Cr, Mn, Mo, and Nb: Part II-Anisothermal Recrystallization and Transformation Textures

 

T 002 A Study of Texture Evolution during Deformation and Annealing in Fe 3 wt.-% Si by Orientation Contrast Microscopy | Scientific.Net

 

T 003 Avances tecnológicos en la industria siderúrgica

 

T 004 Characterization of microstructure, texture and magnetic properties in twin-roll casting high silicon non-oriented electrical steel – ScienceDirect

 

T 005 P 18O Correlation Between Microstructure, Texture, and Magnetic Induction in Nonoriented Electrical Steels | IEEE Journals & Magazine | IEEE Xplore

 

T 006 P 08Q01 (63) Correlation between the Magnetic Properties and the Crystallographic Texture during the Processing of Non Oriented Electrical Steel | Kim Verbeken – Academia.edu

 

T 007 Decarburization Kinetics during Annealing of a Semi-processed Electrical Steel

 

T 008 Effect of annealing cycle on the microstructure and drawability of cold rolled steel sheet

 

T 009 Effect of annealing prior to cold rolling on magnetic and mechanical properties of low carbon non-oriented electrical steels

 

T 011 Q 16D Effect of Annealing Temperature and Time on the Magnetic Properties and Magnetic Anisotropy of a Temper-Rolled, Semi-processed Non-oriented Electrical Steel | JOM

 

T 012 Effect of Annealing Temperature on the Texture and Magnetic Barkhausen Noise of a Non-oriented Electrical Steel (0.88 wt% Si) after Inclined Cold Rolling

 

T 013 Effect of cold rolling and annealing on the grain refinement of low alloy steel

 

T 014 Effect of deformation and annealing on the microstructure and magnetic properties of grain-oriented electrical steels – ScienceDirect

 

T 015 Effect of deformation route and intermediate annealing on magnetic anisotropy and magnetic properties of a 1 wt% Si non-oriented electrical steel – ScienceDirect

 

T 016 (PDF) Effect of Heating Rate on the Development of Annealing Texture in Nonoriented Electrical Steels

 

T 017 (PDF) Effect of High Magnetic Field Annealing on Microstructure and Texture at the Initial Stage of Recrystallization in a Cold-Rolled Interstitial-Free Steel

 

T 018 Effect of Hot Rolling Temperature on the Structure and Magnetic Properties of High Permeability Non‐Oriented Silicon Steel – Cunha – 2005 – steel research international – Wiley Online Library

 

T 020 55 Effect of metallurgical factors on the bulk magnetic properties of non-oriented electrical steels – ScienceDirect

 

 

T 022 Effect of Skin Pass Rolling Reduction Rate on the Texture Evolution of a Non-oriented Electrical Steel after Inclined Cold Rolling | Request PDF

 

T 023 Effect of temper rolling and subsequent annealing on texture development and magnetic permeability of semi-processed electrical steel with 2.3 wt.% Si

 

T 024 Q 05A Effect of temper rolling on the texture formation and magnetic properties of non-oriented semi-processed electrical steel – ScienceDirect

 

T 025 34 Effect of texture and grain size on magnetic flux density and core loss in non-oriented electrical steel containing 3.15% Si – ScienceDirect

 

T 027 (PDF) Effect of the Hot Band Grain Size and Intermediate Annealing on the Deformation and Recrystallization Textures in Low Silicon Electrical Steels

 

T 028 (PDF) Effects by Different Microstructure and Texture of Hot Band on the Evolution of Microstructure and Texture after Cold Rolling and Final Annealing of Ferritic FeSi Steels

 

T 029 Effects of a High Magnetic Field on Microstructure and Texture Evolution in a Cold-Rolled Interstitial-Free (IF) Steel Sheet during Annealing | Request PDF

 

T 030 Effects of Hot Strip Microstructure on the Deformation Microstructure and Textures after Cold Rolling in Ferritic Nonoriented Electrical Steels

 

T 031 Evolution of magnetic properties and crystallographic texture in electrical steel with large plastic deformation

 

T 032 (PDF) High Temperature Oxidation and Its Effects on Microstructural Changes of Hot-Rolled Low Carbon Non-oriented Electrical Steels During Air Annealing

 

T 033 Influence of energy density on the microstructure, growth orientation, and anisotropy of magnetic properties in additively manufactured Fe-3.8wt%Si transformer steels – ScienceDirect

 

T 034 (PDF) Influence of Grain Size and Additions of Al And Mn on The Magnetic Properties of Non-Oriented Electrical Steels With 3 wt. (%) Si

 

T 035 Q 05D Influence of initial annealing on structure evolution and magnetic properties of 3.4% Si non-oriented steel during final annealing – ScienceDirect

 

T 036 (PDF) Influence of the angle between cold rolling direction and hot rolling direction on the texture evolution of non-oriented electrical steels

 

T 037 Influence of the angle between cold rolling direction and hot rolling direction on the texture evolution of non-oriented electrical steels – IOPscience

 

T 038 Q 05G Low silicon non-grain-oriented electrical steel: Linking magnetic properties with metallurgical factors – ScienceDirect

 

T 039 P 04K04 Magnetic properties and crystallographic textures of Fe 2.6% Si after 90% cold rolling plus different annealing – ScienceDirect

 

T O40 06A Magnetic properties of 6.5% silicon content non-oriented electrical steel under sine and PWM excitation – ScienceDirect

 

T 041 P 08Q (PDF) Methods for texture improvement in electrical steels | Marcos Flavio De Campos – Academia.edu

 

T 045 Modelling the angular dependence of magnetic properties of a fully processed non-oriented electrical steel – ScienceDirect

 

T 046 Non-oriented electrical steel with core losses comparable to grain-oriented electrical steel – ScienceDirect

 

T 047 Nonoriented Electrical Steels

 

T 048 (PDF) On the Effect of Texture in Experimental Grades of High-Silicon Electrical Steel

 

T 051 Rapid annealing effects on microstructure, texture, and magnetic properties of non-oriented electrical steel – rapid-annealing-effects-on-microstructure-texture-and-1vzpeyah32.pdf

 

T 053 (PDF) Recrystallization Texture Transition in Fe-2.1 Wt Pct Si Steel by Different Cold Rolling Reduction

 

T 054 Relative effect(s) of texture and grain size on magnetic properties in a low silicon non-grain oriented electrical steel – Astrophysics Data System

 

T 055 (PDF) Study of the Simultaneous Effects of the Hot Band Grain Size and Cold Rolling Reduction on the Structure and Magnetic Properties of Nonoriented 3% Si Steel

 

T 056 (PDF) Study on Influence of Microstructure and Thermal Treatment on Magnetic Losses from Non-Oriented Silicon Electrical Steel

 

T 057 (PDF) Effect of Cross-Rolling on Microstructure, Texture and Magnetic Properties of Non-Oriented Electrical Steels

 

T 058 (PDF) Texture and magnetic properties improvement of a 3% Si non-oriented electrical steel by Sb addition

 

T 061 (PDF) Texture Evolution during the Processing of Electrical Steels with 0.5% Si and 1.25% Si

 

T 062 Texture Evolution of a 2.8 Wt Pct Si Non-oriented Electrical Steel and the Elimination of the 〈111〉//ND Texture | Request PDF

 

T 063 Texture Evolution of a Non-oriented Electrical Steel Cold Rolled at Directions Different from the Hot Rolling Direction | Request PDF

 

T 065 P 08D P 19 Metals | Free Full-Text | Textures of Non-Oriented Electrical Steel Sheets Produced by Skew Cold Rolling and Annealing

 

T 066 The Effect of Cold Rolling Process on the Microstructure and Texture Evolution in a 1 wt. % Si Non-oriented Electrical Steel

 

T 067 (PDF) The Effect of Cross Rolling on Texture and Magnetic Properties of Non Oriented Electrical Steels

 

T 068 (PDF) The Effect of Cryo-Rolling and Annealing on Magnetic Properties in Non-Oriented Electrical Steel

 

T 069 The Effect of Recovery Annealing on the Magnetic and Mechanical Properties of Nonoriented Electrical Steels | IEEE Journals & Magazine | IEEE Xplore

 

T 070 Through process texture evolution and magnetic properties of high Si non-oriented electrical steels

 

 

CA 021 NON ORIENTED MAGNETIC STEEL SHEETS IN ITS APPLICATION TO ELECTRIC CARS

 

 

Electrical Steel for Motors of Electric and Hybrid Vehicles

https://www.jfe-steel.co.jp/archives/en/ksc_giho/no.48/e48-033-038.pdf

 

selectrify® – steel solutions for electric mobility

 

Electrical Steels and Their Evaluation for Automobile Motors – wevj-10-00031

https://www.mdpi.com/2032-6653/10/2/31

 

Electrical steel from voestalpine creates mobility – voestalpine

 

The role of steel in electromobility – voestalpine

 

Why Electrical Steel Can Make All The Difference In EV Motors – Official POSCO Newsroom

 

The Forgotten Fleet: Looking Back on Early Electric Vehicles for a Better Future

https://newsroom.posco.com/en/looking-back-early-electric-vehicles/

 

(20) Electrical Steel Sheet for Traction Motors of Hybrid/Electric Vehicles

 

Efficient electric vehicles with thin electrical steel strip grades

 

[PDF] Electrical steel sheet for traction motors of hybrid/electric vehicles | Semantic Scholar

Automotive shift to EVs draws scrutiny on steel supplier sustainability, says Arcelormittal: Exclusive – Fastmarkets

 

Green Steel: Make Electric Vehicles Greener | Institute for Sustainable Energy

2021-Electrification-White-Paper-final-4-14-21.pdf

 

 

CA 022 NEW  MILLS for PRODUCTION OF N.O. ELECTRICAL STEELS for ELECTRIC CARS

 

 

02A US Steel plans Big River electrical steel line | Argus Media

 

United States Steel : Big River Steel Non-Grain Oriented (NGO) Electrical Steel Line Investment | MarketScreener

 

U.S. Steel building $3B mill in Arkansas

 

JFE Steel to further expand electrical steel sheet capacity in Kurashiki facility|JFE Steel Corporation

 

 

CA 022A THE FUTURE OF ELECTRICAL STEELS IN ELECTRIC CARS

 

The future of electrical steels in electric cars – Buscar con Google AI

 

https://automotive.arcelormittal.com/products/flat/electrical_steels/icare_range

 

 

 

CA 023 NON ORIENTED MAGNETIC STEEL SHEETS SOME GRADES FROM COMPANIES

 

 

companies that produce non oriented magnetic steel sheet – Buscar con Google  Modo IA

 

https://automotive.arcelormittal.com/products/flat/electrical_steels/icare_range

 

Search | ArcelorMittal electrical steels

 

Electrical steels – Industry

 

02 US Steel adding NGO electrical steel line at Arkansas mill by 2023 | S&P Global Platts

 

Recent progress of high silicon electrical steel in JFE Steel – NDL Digital Collections

 

https://www.thyssenkrupp-steel.com/en/products/electrical-steel/electrical-steel-non-grain-oriented/electrical-steel-non-grain-oriented.html

 

Electrical Steel | Tata Steel in Europe

 

Electrical steel strip

 

We Are U. S. Steel. | United States Steel Corporation

 

Electrical Steel, NGO, GO Steel Grades | Big River Steel

 

POSCO breaks ground on $805M non-oriented electrical steel (NOES) plant – Green Car Congress

 

jsw steel: G O JSW Steel, Japan&apos;s JFE Steel ink agreement to manufacture electrical steel in India – The Economic Times

 

 

CA 024 PRODUCTS, PRODUCTION AND MARKET

 

 

001 ELECTRICAL STEEL SHEETS – f1e-001.pdf

 

Federal Register :: Non-Oriented Electrical Steel From People&apos;s Republic of China, Germany, Japan, Republic of Korea, Sweden, and Taiwan: Continuation of Antidumping Duty and Countervailing Duty Orders

 

New study: Non-Grain Oriented Electrical Steel Market forecast to 2026 | TATA Steel, BX Steel, Nucor, CSC – MMSteelClub

 

Electrical Steel Market forecast to 2026 – Buscar con Google

 

Product – Tianjin Blueprints Iron And Steel Co. LTD.

 

Cold rolled Non-Oriented silicon steel- Tianjin Blueprints Iron And Steel Co. LTD.

 

Making and using non-oriented silicon steels- Tianjin Blueprints Iron And Steel Co. LTD.

 

Global Electrical Steel Market by Type (non-grain-oriented and grain-oriented), Application (Transformers, Motors, Inductors), End-use Industry (Energy, Automotive, Manufacturing, Household Appliances) and Region – Forecasts to 2026

 

Electrical Steel Market – Forecasts from 2021 to 2026

 

Electrical Steel Market Global Forecast to 2026 | MarketsandMarkets

 

Electrical Steel Market by Type, Application, End-use Industry and Region – Global Forecasts to 2026 – ResearchAndMarkets.com | Business Wire

 

Electrical Steel Market worth $45.8 billion by 2026 – Exclusive Report by MarketsandMarkets™

 

Electrical Steel Market Size, Global Forecast to 2028

Silicon Steels and Their Applications :: Total Materia Article

Electrical steel – Wikipedia

 

CA 025 ENVIRONMENTAL IMPACT, ENERGY SAVINGS and ECONOMIC ASPECTS

 

 

R 16R China electrical steel poised for green boost, but experts warn against overcapacity – Fastmarkets

 

M 03M A Review of Carbon Emissions from Electrical Machine Materials

 Environmental impact, energy savings and economic aspects of production and use of non oriented electrical steels  Buscar con Google AI

 

 

 

 ———————————-

———————————-

 

 

 

ASIDERURGIA 19 IRON – STEELMAKING and  ENVIRONMENTAL IMPACT

 

A technical report on this aspect can be found in :

 

 https://www.ironandsteelmaking.com/climate-change/

https://www.researchgate.net/profile/Ignacio-Ibarrondo/research

 

 

01   INTRODUCTION   01   2020

 

Climate19026 change and theIMPORTANTE production of iron and steel | worldsteel

ENVIRONMENT AND CLIMATE IMPORTANTISIMO CHANGE | worldsteel

Climate Action: Policy and initiatives | worldsteel

Climate change and the production of iron and steel | worldsteel

Scrap Metal Recycling Made Easy PASADO | 21 Scrap Yards | Gerdau N.A.

worldsteel_climatechange_policy%20paper.pdf

United States Environmental Protection Agency | US EPA

The Iron and Steelmaking Industry and its Impact on

Germany&apos;s National Hydrogen Strategy | Clean Energy Wire

Nationales Reformprogramm 2020 – bmwi_Nationale Wasserstoffstrategie_Eng_s01.pdf

Nationales Reformprogramm 2020 – the-national-hydrogen-strategy.pdf

German government agrees on national hydrogen strategy – ABC News

France-Hydrogene_National-Hydrogen-Strategy_EN.pdf

UK Hydrogen Strategy – UK-Hydrogen-Strategy_web.pdf

U.S. National Hydrogen Strategy and Roadmap | Hydrogen Program  (download)

Hydrogen strategy for canada – NRCan_Hydrogen-Strategy-Canada-na-en-v3.pdf

China Hydrogen Strategy 2026: Price Targets, Pilot Programmes & Global Supply Chain Dominance

 

 

02  HYDROGEN TECH WORLD News Update, News, Electrolyzers, Magazine, Etc….

 

 

Newsletter subscription – Thank You! | Hydrogen Tech World.com

Electrolysis technologies and LCOH: current state and prospects for 2030

 Hydrogen Tech World News Update 01

 Home Hydrogen Tech World | Hydrogen Tech World.com

Home – World Hydrogen Week 2025

Pass Options 2025 – World Hydrogen Week 2025

 

02A  WAYS TO PRODUCE HYDROGEN IN ITS VARIOUS FORMS SPECIALLY GREEN HYDROGEN 2022

 

10.01 Green Steel — H2 Green Steel

https://stegra.com/en/green-steel

 

10.02 Green Steel — H2 Green Steel

https://stegra.com/en/green-hydrogen

 

1000 Toward green steel: Modeling and environmental economic analysis of iron direct reduction with different reducing gases – ScienceDirect

 

news.cision.com

86 https://www.nipponsteel.com/en/ir/library/pdf/20210330_ZC.pdf

10.03 Hydrogen production – Wikipedia

10..04 Hydrogen Production: Overview of Technology Options – h2_tech_roadmap.pdf

10.06 Hydrogen Production: Natural Gas Reforming | Department of Energy

10.07 (PDF) Coal gasification pilot plant for hydrogen production. Part B: syngas conversion and hydrogen separation

11 voestalpine supplies first CO<sub>2</sub>-reduced premium steel – voestalpine

11.01 voestalpine Unveils CO2-Reduced Steel – Buscar con Google

15 One of the largest green hydrogen Thyssenkrup projects in the world: thyssenkrupp signs contract to install over 2GW electrolysis plant for Air Products in NEOM

 

18.01 Iberdrola and H2 Green Steel sign 2.3 billion euros green hydrogen deal – Iberdrola

18.02 Iberdrola and H2 Green Steel to build €2.3-billion green-hydrogen plant for sustainable steel production – Chemical Engineering

 

19 ArcelorMittal Europe to produce ’green steel’ starting in 2020 | ArcelorMittal

An overview of water electrolysis technologies for green hydrogen production – ScienceDirect

 

Hydrogen on an Industrial Scale – Buscar con Google

green hydrogen production – Buscar con Google

Oman, Tata Steel Nederlands Look to Establish Green H2 Supply Chain – Association for Iron & Steel Technology

 

Tata Steel and Oman Nederland look to establish green hydrogen supply shain — Trade Fair

Tata Steel – The Netherlands, Oman and Germany collaborate on the import of liquid hydrogen – Hydrogen Central

 

Green hydrogen export projects in the Middle East and North Africa should be re-directed to green steel: analyst | Hydrogen Insight

 

Salzgitter Celebrates Start of Work on Green H2 Production Plant – Association for Iron & Steel Technology

 

We make steel green | SALCOS®

Salzgitter begins construction of 100MW green hydrogen plant to supply low-carbon steelmaking | Hydrogen Insight

 

U.S. Mill Orders H2 Electrolysis Equipment – Association for Iron & Steel Technology

Nel Hydrogen US Secures $7 Million Order for Two PEM Electrolysers for New Steel Mill – Energy News

 

Consortium Awarded EUR1.8 Million for H2-Focused R&D Project – Association for Iron & Steel Technology

 

green hydrogen production for iron and steelmaking – Buscar con Google

Production Archives – GreenSteelWorld.com

Energies | Free Full-Text | Decarbonization of the Iron and Steel Industry with Direct Reduction of Iron Ore with Green Hydrogen

 

(1) (PDF) Decarbonization of the Iron and Steel Industry with Direct Reduction of Iron Ore with Green Hydrogen

 

El hidrógeno verde: la energía del futuro clave en la descarbonización | ACCIONA

Producción de hidrógeno – Wikipedia, la enciclopedia libre

Electrólisis del agua – Wikipedia, la enciclopedia libre

Producción biológica de hidrógeno – Wikipedia, la enciclopedia libre

Gas de síntesis – Wikipedia, la enciclopedia libre

SMR Hydrogen Plant – 35000Nm3/h Natural Gas SMR Hydrogen Plant Industrial Hydrogen Production from China Factory

 

Water electrolysers / hydrogen generators | Nel Hydrogen

Hydrogen Production | Nel Hydrogen

Producir hidrógeno verde de forma más eficiente y barata es posible gracias a un nuevo electrocatalizador

 

El hidrogeno verde a partir del agua y energias renovables – Buscar con Google

 

Qué es el hidrógeno verde, cómo se obtiene, y su papel en el futuro.

Hidrógeno verde: ventajas y oportunidades | Enel Group

From idea to reality: Launching your green hydrogen project – Ramboll Group

verde hydrogen

Hydrogen Production: Electrolysis | Department of Energy

green hydrogen production – Google Académico (papers)

Vapo_EtOH_Green_H2_2012-with-cover-page-v2.

https://www.academia.edu/28084104/Design_of_Nanocatalysts_for_Green_Hydrogen_Production_from_Bioethanol

 

Multicriteria analysis of seawater electrolysis technologies for green hydrogen production at sea – ScienceDirect

 

Green hydrogen production potential for developing a hydrogen economy in Pakistan – GreenHydrogenproductionpotentialforHydrogenEconomyinPakistan.pdf

 

HyProvide® X-series 6 MW modular electrolysers

ANDRITZ Opens Electrolyzer Gigafactory – Association for Iron & Steel Technology

ANDRITZ opens Electrolyzer Gigafactory in Erfurt, Germany

Andritz opens electrolyzer gigafactory in Germany – Offshore Energy

 

03  HYDROGEN as  RENEWABLE  ENERGY  01

 

Electrolyser maker Hystar bags USD 36m to advance deployment

EnBW to invest up to EUR 50bn in energy transition projects by 2030 | Renewable Energy News | Renewables Now

Gasunie, Storag Etzel close first phase of hydrogen storage project

hydrogen as  renewable  energy  Buscar con Google

 

 

04    HYDROGEN PRODUCTION  PLANTS  and DECARBONIZATION,

THE USE OF HYDROGEN AS REDUCING AGENT   01   

 

Global Strategies for Low-Carbon Iron and Steel Production – Sustainable Development Solutions Network

 

One-Stop-Shop – Hydrogen | The National Hydrogen Strategy

 

iron and steelmaking climate change – Buscar con Google

 

GCH to build green H2 plant in Scotland’s Dumfries and Galloway

Insolvent HH2E sells 1 GW green hydrogen project in Germany

E.ON&apos;s Westenergie launches hydrogen infrastructure project in Germany

Gen-Hy signs EUR-100m state aid for French electrolyser factory

Lhyfe obtains EUR 53m to support hydrogen projects in France, Germany

Spain to launch 1st offshore green hydrogen plant in Canary Islands

Hy2gen raises EUR 47m to advance green hydrogen pipeline

electricity-based hydrogen – Buscar con Google

Ironmaking and Steelmaking Processes: Greenhouse Emissions, Control, and … – Google Libros

electricity-based hydrogen – Google Académico

hydrogen instead Carbon – Buscar con Google

Tata Steel helps decarbonisation plans for the UK

Europe&apos;s steel industry must invest over EUR 100 billion in CO2 reduction | Roland Berger

 

MPT International 6/2019 (December) by MPT Metallurgy – Plant Engineering – Technology – issuu

 

Metals | Free Full-Text | Toward a Fossil Free Future with HYBRIT: Development of Iron and Steelmaking Technology in Sweden and Finland | HTML

 

GrInHy2.0: Sunfire delivers the world’s largest High-Temperatur Electrolyzer to Salzgitter Flachstahl – Sunfire

 

https://www.ssab.com/news/2020/08/media-invitation-hybrit–the-worlds-very-first-pilot-plant-for-fossilfree-steel-is-now-to-start-oper

 

https://www.hybritdevelopment.com/

https://www.aist.org/news/steel-news/2020/september/14-sept-18-sept/eurofer-climate-goals-are-important,-but-so-is-a

 

Press releases – Salzgitter AG

 Decarbonization challenge for steel

SMS group GmbH: Paul Wurth and the steel partners Dillinger and Saarstahl join forces on development of dry reforming technology | Press Detail

 

Paul Wurth, Saarstahl and Dillinger strengthen cooperation on H2Syngas | H2 Bulletin

KOBELCO Group’s CO₂ Reduction Solution | KOBE STEEL, LTD.

Swedish steel mill to install 17-MW hydrogen plant

Green Hydrogen‐Based Direct Reduction for Low‐Carbon Steelmaking – Rechberger – 2020 – steel research international – Wiley Online Library

 

Pathways to decarbonisation episode two: steelmaking technology | BHP

German Federal Government to Provide €55 Million for ArcelorMittal’s Hydrogen DRI Plant – Midrex Technologies, Inc.

 

Hydrogen in steel production: what is happening in Europe – part one – Bellona.org

Hydrogen in steel production: what is happening in Europe – part two – Bellona.org

Sweden moves one step closer to green steel – Energy Live News

H2 scheme to create 5m tonnes of &apos;green steel&apos; by 2030 – Energy Live News

Sweden&apos;s &apos;green&apos; steel plant starts operations – Mining Magazine

92 ArcelorMittal invests $25 million in breakthrough nuclear power innovator TerraPower | ArcelorMittal

 

92BIS The Future of Nuclear Energy in a Carbon-Constrained World – The-Future-of-Nuclear-Energy-in-a-Carbon-Constrained-World.pdf

 

92.01 The future of nuclear power – Power Technology

Crisis energética PANORAMA GENERAL INTERESANTE

01 ArcelorMittal joins Breakthrough Energy’s Catalyst program as anchor partner | ArcelorMittal

 

02 Ovako to produce carbon-neutral steel from Jan 2022 – H2 Bulletin

02 Carbon Neutrality – Ovako

03 Nucor Launches Econiq™ Net-Zero Steel

03 Nucor Unveils Net-Zero Steel – Buscar con Google

04.01 bluemint® Steel: thyssenkrupp Steel launches steel with an allocated low CO2 intensity

 

05 Volvo says this is the world&apos;s first vehicle made from fossil-free steel

05.01 The future is here – the world’s first vehicle made with fossil-free steel – SSAB

06 bis thyssenkrupp Materials Services: Climate neutral by 2030

07 Cleveland-Cliffs Partners with U.S. Department of Energy through Better Climate Challenge Initiative | Business Wire

 

07.01 Cleveland-Cliffs Partners with U.S. Department of Energy through Better Climate Challenge Initiative – Buscar con Google

 

13 car_2.pdf

26.01 China, the Environment, and the Next Decade – YouTube

30 (PDF) The way COLOCADO 076 10 6 005 to a carbon free steelmaking

32 Tata Steel reports highest ever quarterly consolidated EBITDA | Tata Steel in Europe

32.01 Tata Steel Netherlands opts for hydrogen route at IJmuiden steelworks | Bioenergy International

 

34 Sustainable Aspects of CO2 Ultimate Reduction in the Steelmaking Process (COURSE50 Project), Part 1: Hydrogen Reduction in the Blast Furnace | SpringerLink

 

36 Decarbonization in steel | McKinsey

36.01 Tackling the challenge of decarbonizing steelmaking | McKinsey

38 Zero Impact steel mill by 2023 | Arvedi Group

39 Net Zero by 2050 – A Roadmap for the Global Energy Sector – NetZeroby2050-ARoadmapfortheGlobalEnergySector_CORR.pdf

 

43 ENERGIRON® Largest Hydrogen-Based DRI Facility in China | Tenova

44 MIDREX H2 – The Road to CO2-free Direct Reduction – AISTech_2021_MIDREX_H2_Final.pdf

 

https://www.primetals.com/en/

 

44 Ultra-Low CO2 Ironmaking: Transitioning to the Hydrogen Economy – Midrex Technologies, Inc.

 

47 sie_proceeding_portrait_A4_v2 – Emission_reduction_BF.pdf

47 Publications | Primetals Technologies

48 Green hydrogen makes low-carbon steel a reality. | DUG Technolog

Green_Hydrogen_for_Low-Carbon_Steelmaking_.pdf

 

48 Green Hydrogen‐Based Direct Reduction for Low‐Carbon Steelmaking – Rechberger – 2020 – steel research international – Wiley Online Library

 

49 Green Steel through Hydrogen Direct Reduction: A Study on the Role of Hydrogen in the Indian Iron and Steel Sector | TERI

 

49 policybrief-green-steel.pdf

Production, Storage DESCARG Safe Handling of Hydrogen – YouTube

56 Council agrees on the Carbon Border Adjustment Mechanism (CBAM) – French Presidency of the Council of the European Union 2022

 

57 HYBRIT Granted Support from EU Innovation Fund – Hybrit

58 Kobe Steel to launch “Kobenable Steel” Japan’s first low CO₂ blast furnace steel | KOBE STEEL, LTD.

 

61 65A SSAB and Shape announce partnership on fossil-free steel for automotive applications – SSAB

 

62 Green Steel Collaboration | Volvo Group

63 63A LIBERTY makes historic investment in Ostrava’s GREENSTEEL transformation – LIBERTY Steel Group

 

64 Low-carbon emissions steel standard | ArcelorMittal

64A PowerPoint Presentation – arcelormittal-low-emissions-steelmaking-standards-proposal.pdf

 

64B Reporting Hub | ArcelorMittal

 

———–

HYBRIT – SSAB

 

65C HYBRIT. Una nueva y revolucionaria tecnología de fabricación de acero. – SSAB

65C 01 Acero de alta resistencia de SSAB – chapa, placa, bobina, tubo, perfil – SSAB

65D Centro de seminarios web – SSAB

65E What is fossil-free steel and when will production start? – SSAB

66 Timeline for HYBRIT and fossil-free steel – SSAB

68 HYBRIT – Buscar con Google

69 HYBRIT – SEI

70 Hybrit

71 HYBRIT green steel – Buscar con Google

74.02 HYBRIT: New research shows hydrogen-reduced iron has superior properties – SSAB

74.03 SSAB’s fossil-free steel showcased by Hiab at IAA in Hanover, Germany – SSAB

73 https:// worldsteel.org/wp-content/uploads/Fact-sheet-Hydrogen-H2-based-ironmaking.pdf

 

74.01 HYBRIT: Milestone reached – pilot facility for hydrogen storage up and running – SSAB

 

74.04 HYBRIT: A unique, underground, fossil-free hydrogen gas storage facility is being inaugurated in Luleå – SSAB

 

———-

 

H2 Green Steel contracts with Midrex and Paul Wurth for the world&apos;s first commercial 100% hydrogen direct reduced iron plant, and Kobe Steel partners with H2 Green Steel for equity investment | KOBE STEEL, LTD.

 

74 France: GravitHy Consortium Plans €2.2B Investment & Use Low-Carbon Hydrogen To Produce Direct Reduced Iron (DRI)

 

75 The European steel industry has embraced green production and is committed to achieving carbon neutrality – Buscar con Google

 

76AA Presentation Material and Movies |JFE Holdings, Inc.

76A JFE Steel Moves Ahead with Testing CO2-utilization Technologies Aimed at Achieving Carbon Neutrality|JFE Steel Corporation

 

76B JFE Steel Moves Ahead with Testing CO2 Utilization Technologies

76C Technology of CO2 utilization | Challenge Zero

76D JFE Steel to Test CO2 Utilization Technologies in Two R&D Projects – Búsqueda de Google

 

74.05 Steelmakers must ARTICULOSrethink decarbonisation strategies | Mining Digital

78 Green steel and Europe’s natural gas challenge | McKinsey

People, Steel and Technology | Salzgitter AG

We make steel green | SALCOS®

78B WindH2 | SALCOS®

78C GrInHy2.0 | SALCOS®

78D μDRAL | SALCOS®

Polymer electrolyte membrane electrolysis – Wikipedia (electrolysis of water)

79 Tata Steel & BHP partner on low carbon iron & steelmaking – Industry Europe

79A New CO2 conversion project turns steel emissions into e-fuels – Industry Europe

79B Steeling the future: Using hydrogen to make green steel – Industry Europe

80A China&apos;s First Million-ton Hydrogen-based Shaft Furnacce Kicks off at Baosteel Zhanjiang Steelworks_PROJECT NEWS_NEWS & MEDIA_SINOSTEEL ENGINEERING & TECHNOLOGY CO., LTD.,

 

85 Green With POSCO COMPLETO

85A XCarb™ green steel certificates | ArcelorMittal

Environment | JFE Holdings, Inc.

85B1 Climate Change | JFE Holdings, Inc.

85B2 JFE GROUP REPORT 2021 – all.pdf

85C Green steel solutions | Tata Steel in Europe

85C1 Carbon neutral steelmaking | Tata Steel in Europe

85D Nucor | Econiq™ – the World’s First Net-Zero Carbon Steel at Scale

85D1 Nucor | Greenhouse Gas Reduction Target Strategy

85D2 2021_Sustainability_Report_DRAFT.pdf

85F United States Steel Corporation Announces Goal to Achieve Carbon Neutrality by 2050 | Business Wire

 

88 H2 Green Steel partners with Midrex for technology and Kobe Steel for equity investment

88.01 H2 Green Steel partners with Midrex for technology and Kobe Steel for equity investment – H2 Green Steel

 

89 TMS International RECICLADO

90.01 Carbon capture in the steel industry: ArcelorMittal, Mitsubishi Heavy Industries Engineering, BHP and Mitsubishi Development sign collaboration agreement | ArcelorMittal

 

21-esf-recap.pdf

91.01 Iron is better quality when produced with hydrogen instead of fossil fuels, finds green steel developer Hybrit | Hydrogen news and intelligence

 

08.01 Hydrogen production without CO2 is getting a boost with new tech from Verdagy | TechCrunch

 

12 ArcelorMittal and the EIB announce €280m of funding for research and innovation supporting the steel company’s decarbonisation objectives | ArcelorMittal

 

20 ArcelorMittal & partners receive €10M for green hydrogen production with Hybit in Bremen – Green Car Congress

 

21 thyssenkrupp Signs Supply Contract for Electrolysis Plant – Buscar con Google

23 ArcelorMittal makes US$5 million investment in H2Pro via XCarb™ innovation fund | ArcelorMittal

 

26 AMERICAN STEEL, THE ENVIRONMENT, AND THE NEXT DECADE. – Lourenco Goncalves : StonkTheory

 

35 Ternium S.A.: Ternium and Vale Sign Memorandum of Understanding to Develop Steelmaking Decarbonization Solutions

 

37 CIRCULAR GREEN STEEL Trademark of Giovanni Arvedi. Application Number: 018334042 :: Trademark Elite Trademarks

 

40 Volkswagen Group and Salzgitter AG sign Memorandum of Understanding on supply of low-CO2 steel from the end of 2025

 

45 British Steel welcomes green hydrogen project on Teesside | British Steel

46 Core strategies to reduce steel production emissions

53 SSAB to spend $4.75 bil to transform Nordic production to green steel by 2030 | S&P Global Commodity Insights

 

53 SSAB plans a new Nordic production system and to bring forward the green transition – SSAB

 

59 Steel industry emissions to decline 30% by 2050 | Wood Mackenzie

59A Steel industry emissions to decline 30% by 2050 — report – MINING.COM

82 CO2 AI | AI for Sustainability Solution | BCG

83 Integration-of-Green-Steel-Production-in-Renewable-Energy-Dominated-Grids.pdf

85C2 Tata Steel unveils green steel with 30% CO2 reduction | Article | Packaging Europe

85E SMS group and JSW Steel sign MOU for carbon reduction projects – SMS group GmbH

88.01 h2 green steel News & Press Releases | PR Newswire

90 BHP Group, ArcelorMittal trial carbon capture at Europe, US steel plants | Reuters

91 H2 Green Steel scoops $4.5bn debt financing for hydrogen-based plant | Hydrogen news and intelligence

 

91.02 Leading European financial institutions support H2 Green Steel’s €3.5 billion debt financing — H2 Green Steel

 

2022 Sustainability Report is released | Tenova

HBIS is producing DRI by using more than 60% of hydrogen | Tenova

First Hydrogen-based DRI Plant in China | Tenova

TENOVA_SR_2022_Digest.pdf

Climate member initiatives IMPORTANTE- worldsteel.org

112 Decarbonization with hydrogen solutions – YouTube (Conference)

113J 05 midrex h2 energy cost – Buscar con Google

125 H2 Green Steel has entered into a long-term frame agreement with Fortum for electricity supply — H2 Green Steel

 

142 Chinese steelmaker HBIS produces green direct reduced iron products | Reuters

197 decarbonization News — GMK Center

 

05    INTERNATIONAL PRODUCTION  PLANTS  and DECARBONIZATION,THE USE OF HYDROGEN AS REDUCING AGENT   02  

 

COMPLETE COURSE ABOUT HYDROGEN

 

(2) Course Introduction – Hydrogen Energy: Production, Storage, Transportation and Safety – YouTube

 

(2) Lecture 01: Properties of Hydrogen – YouTube

(2) Lecture 02: Status of Hydrogen Supply and Demand – YouTube

(2) Lecture 03: Methods of Hydrogen Production – YouTube

(2) Lecture 04: Steam Methane Reforming Part – 1 – YouTube

(2) Lecture 05: Steam Methane Reforming Part-2 – YouTube

(2) Lecture 06: Steam Reforming of Higher Hydrocarbons – YouTube

(2) Lecture 07: Tutorial -1 – YouTube

(2) Lecture 08: Advanced Methods of Steam Reforming – YouTube

(2) Lecture 09: Partial Oxidation Method for Hydrogen Production – YouTube

(2) Lecture 10: Autothermal Reforming – YouTube

(2) Lecture 11: Combined, Dry, Bi and Tri Reforming – YouTube

(2) Lecture 12: Reforming using Alternate Energy Sources – YouTube

(2) Lecture 13: Tutorial – 2 – YouTube

(2) Lecture 14: Hydrogen Production by Methane Decomposition – YouTube

(2) Lecture 16: Hydrogen Production from Biomass Part -2 – YouTube

(2) Lecture 17: Hydrogen Production from Biomass Part -3 – YouTube

(2) Lecture 18: Hydrogen Production from Coal – YouTube

(2) Lecture 19: Tutorial -3 – YouTube

(2) Lecture 20: Hydrogen Separation and Purification Part-1 – YouTube

(2) Lecture 21: Hydrogen Separation and Purification Part-2 – YouTube

(2) Lecture 22: Thermochemical Cycles for Hydrogen Production – YouTube

(2) Lecture 23: Electrolysis of Water for Hydrogen Production – YouTube

(2) Lecture 24: Fundamental of Electrolysis of Water – YouTube

(2) Lecture 25: Electrolytic Cell Components and Electrolyzer stack – YouTube

(2) Lecture 26: Different Types of ElectrolyzerTechnologies – YouTube

(2) Lecture 27: Photoelectrochemical Hydrogen Production – YouTube

(2) Lecture 28: Tutorial -4 – YouTube

(2) Lecture 29: Technical Comparison of Various Hydrogen Production Routes – YouTube

(2) Lecture 30: Economics and Status of Various Hydrogen Production Routes – YouTube

(2) Lecture 31: Introduction to Hydrogen Storage – YouTube

(2) Lecture 32: Underground Hydrogen Storage – YouTube

(2) Lecture 33: Fundamentals of Hydrogen Compression and Expansion – YouTube

(2) Lecture 34: Thermodynamics of Hydrogen Compression Part – 1 – YouTube

(2) Lecture 35: Thermodynamics of Hydrogen Compression Part – 2 – YouTube

(2) Lecture 36: Reciprocating and Diaphragm compressors for Hydrogen Compression – YouTube

 

(2) Lecture 37: Linear and Liquid Hydrogen Compressors – YouTube

(2) Lecture 38: Cryogenic and Metal Hydride based Hydrogen Compressors – YouTube

(2) Lecture 39: Electrochemical and Adsorption based Compressors – YouTube

(2) Lecture 40: Compressed Hydrogen Tanks – YouTube

(2) Lecture 41: Tutorial – 5 – YouTube

(2) Lecture 42: Hydrogen Liquefaction – YouTube

(2) Lecture 43: Liquid State Hydrogen Storage – YouTube

(2) Lecture 44: Fundamentals of Adsorption based Materials for Hydrogen Storage – YouTube

 

(2) Lecture 45: Adsorption based Solid State Hydrogen Storage Materials – YouTube

(2) Lecture 46: Metal Hydrides for Solid State Hydrogen Storage Part -1 – YouTube

(2) Lecture 47: Fundamentals of Metal hydrides for Solid State Hydrogen Storage Part -1 – YouTube

 

(2) Lecture 48: Fundamentals of Metal Hydrides for Solid State Hydrogen Storage Part -2 – YouTube

 

(2) Lecture 49: Different Types of Hydrides for Hydrogen Storage – YouTube

(2) Lecture 50: Tailoring Metal Hydrides for Practical Applications: Nanostructure Part 1 – YouTube

 

(2) Lecture 51: Tailoring Metal Hydrides for Practical Applications: Nanostructure Part 2 – YouTube

 

(2) Lecture 52: MH System Design and Experimental Facilities on SolidState Hydrogen Storage – YouTube

 

(2) Lecture 53: Tutorial – 6 ( MH systems design) – YouTube

(2) Lecture 54: Novel Materials and Overall Storage – YouTube

(2) Lecture 55: Overview of Storage Methods and Economics – YouTube

(2) Lecture 56: Hydrogen Transportation via H2 Pipelines – YouTube

(2) Lecture 57: Other Options for Long Distance Hydrogen Transmission – YouTube

(2) Lecture 58: Hydrogen Transport via Road – YouTube

(2) Lecture 59: Hydrogen Refuelling Stations – YouTube

(2) Lecture 60: Use of Hydrogen in Internal Combustion Engines Part -1 – YouTube

(2) Lecture 61: Use of Hydrogen in Internal Combustion Engines Part -2 – YouTube

(2) Lecture 62: Use of Hydrogen in Fuel Cells – YouTube

(2) Lecture 63: Hydrogen Sensing Part-1 – YouTube

(2) Lecture 64: Hydrogen Sensing Part -2 – YouTube

(2) Lecture 65: Properties of Hydrogen Associated with Accidents – YouTube

(2) Lecture 66: Classification of Hydrogen related Hazards – YouTube

(2) Lecture 67: Compressed and Liquid Hydrogen Related Hazards – YouTube

(2) Lecture 68: Regulations, Codes and Standards – YouTube

(2) Lecture 69: Utilisation in Different Sectors, Global Status and Future Directions – YouTube

 

————-

The Issue – Global Steel Climate Council

The Steel Climate Standard – Global Steel Climate Council

GSCC-Standard-August2023.pdf

102 Biggest US steelmaker enters partnership for green steel | Sustainability Magazine

103 Rio Tinto’s BioIron™ proves successful for low-carbon iron-making

103 News – University of Nottingham’s partnership with Rio Tinto takes next step towards decarbonising steelmaking – University of Nottingham

 

103 Rio Tinto Steps Up Testing of New Low-Carbon Ironmaking Process – Buscar con Google

 

104 Production of green steel in Asia on an industrial scale is possible in a decade — BHP — News

 

105 Nucor Investing in Start-Up Company Developing Zero-Carbon Iron Technology

105A Nucor investing in start-up company Electra developing zero-carbon iron technology – Green Car Congress

 

107 ArcelorMittal inaugurates flagship carbon capture and utilisation project at its steel plant in Ghent, Belgium | ArcelorMittal

 

107A ArcelorMittal S.A.: ArcelorMittal inaugurates flagship

107B ArcelorMittal inaugurates flagship carbon capture and utilization project in Belgium – Chemical Engineering

 

110 Carbon capture: the hopes, challenges and controversies | FT Film – YouTube

111 How Carbon Capture Works – YouTube

112B 64B Corporate library | ArcelorMittal

113 Decarbonisation investment plans | ArcelorMittal (Copy and paste)

113A Spain: A €1 billion investment to halve our carbon emissions and create the world’s first full-scale zero-carbon emissions steel plant | ArcelorMittal (Copy and paste)

 

113B Partnering with the Canadian government towards a common decarbonisation agenda | ArcelorMittal (Copy and paste)

 

113C Belgium: Showcasing the full spectrum of our decarbonisation technologies | ArcelorMittal (Copy and paste)

 

113G03 Hamburg H2: Working Y VIDEO towards the production of zero-carbon emissions steel with hydrogen | ArcelorMittal (Copy and paste)

 

113D Technology pathways to net-zero steel | ArcelorMittal

Climate Action Reports | ArcelorMittal (Copy and paste)

113F Leading our industry’s efforts to decarbonise | ArcelorMittal (Copy and paste)

ArcelorMittal publishes second group climate action report | ArcelorMittal (Copy and paste)

113G01 Carbalyst®: Capturing and re-using our carbon-rich waste gases to make valuable chemical products | ArcelorMittal (Copy and paste)

 

113J 00ArcelorMittal en España – YouTube (Copy and paste)

113J 04 La hoja de ruta para la descarbonización en España – YouTube

113G06 Futurising VIDEOS MUY INTERESANTES| Pódcast en Spotify

https://open.spotify.com/show/3yDafVJL1DWogZCbDMRKHh

 

113G07 Futurising 2 – episode three: The steel plant of the future – Deploying the technology of tomorrow, today | ArcelorMittal (Copy and paste)

 

113G04 The 3D Project (DMX™ Demonstration in Dunkirk) | ArcelorMittal

113E Steel&apos;s sustainability credentials | ArcelorMittal (Copy and paste)

108 Japan steelmakers lay out road map for a hydrogen-electric future – Nikkei Asia

191A POSCO to make all steel via hydrogen route by 2050

191B POSCO Revolutionizes Steel Industry with Hydrogen Reduction Ironmaking for Carbon Neutrality – Green Hydrogen News

191C POSCO to launch the production of green steel by 2030

114 POSCO to Carry Out Green Hydrogen Project with Fortescue Metal Group – Official POSCO Newsroom

 

114A Carbon Neutral StrategyPOSCO – Carbon Neutrality – POSCO

arcelormittal-net-zero-steel-presentation_12-07-21-final-for-website.pdf

 

116 Nippon Steel, Mitsubishi Corporation and ExxonMobil to Evaluate and Establish CCS Value Chains in the Asia Pacific Region

 

116A Nippon Steel, Mitsubishi and Exxon to Explore Carbon Capture — Decarbonization

117 Hydrogen in steel production: what is happening in Europe – part one – Bellona.org

117A Hydrogen in steel production: what is happening in Europe – part two – Bellona.org

119 thyssenkrupp Steel awards a contract worth billions of euros to SMS group for a direct reduction plant: one of the world&apos;s largest industrial decarbonization projects gets underway – SMS group GmbH

 

119A Thyssenkrupp picks SMS Group to build H2-powered steel plant

119B thyssenkrupp Steel awards €1.8 billion contract to SMS group for H2-powered DRI plant

 

120 ★★201230_2050 Carbon Neutral Strategy of the Republic of Korea_내지(4차수정).hwp – LTS1_RKorea.pdf

 

121 Japan’s top steelmaker eyes $700 million ‘green steel’ project | The Japan Times

123A SSAB introduces two near-zero emission steels – SSAB

124A BHP signs Carbon Capture and Utilisation pilot agreement with China’s HBIS Group

123 SSAB launches new zero-emission steel – SSAB Zero™ – SSAB

127 What is fossil-free steel and when will production start? – SSAB

127A The next generation of recycled steel – SSAB

127B FAQs: the big questions answered – SSAB

127 65 65B SSAB is taking the lead in decarbonizing the steel industry – SSAB

 

https://event.on24.com/wcc/r/4349185/B99CBE865EE0E076BD545FFD0BD59778?mode=login&email=ignacio6060@gmail.com

 

127C ssabfosilfreewebinarapril 2023 – Buscar con Google

128 Utility Global partners with Stelco for the decarbonization of integrated steelmaking | H2TECH

 

130.01 Towards hydrogen definitions based on their emissions intensity – Towardshydrogendefinitionsbasedontheiremissionsintensity.pdf

 

130.02 Emissions Measurement and Data Collection for a Net Zero Steel Industry – Analysis – IEA

 

131 ArcelorMittal and John Cockerill announce plans to develop world’s first industrial scale low temperature, iron electrolysis plant | ArcelorMittal

 

131B John Cockerill, acteur d&apos;une industrie sans carbone fossile – YouTube

134A Cleveland Cliffs hydrogen injection trial a success

134B Cleveland-Cliffs Completes Successful Blast Furnace Hydrogen Injection Trial at Middletown Works | Nasdaq

 

134C Cleveland-Cliffs completes successful blast furnace hydrogen injection trial at Middletown Works – Green Car Congress

 

136 ENERGIRON towards a green future – ENERGIRON

139A Carbon capture agreement with Nucor Corporation | ExxonMobil

139 Nucor | Nucor Enters Into Carbon Capture & Storage Agreement with ExxonMobil

193A Nucor | Nucor Sets Net-Zero Science-Based Greenhouse Gas Targets for 2050

140 POSCO to break ground on hydrogen-based steel plant

144B 88.01 10 H2 Green Steel

https://stegra.com/en

147A SMS group and Tata Steel join forces to showcase decarbonization technology on industrial scale – SMS group GmbH

 

147B Tata Steel Limited signs a MoU with Germany’s SMS group to collaborate on decarbonisation technology

 

148A H2 Green Steel in 1.5 billion Euro agreement with ZF — H2 Green Steel

152 https://www.tmsinternational.com/Services/EPS

156A Meranti and Danieli cooperation for a new Green Steel plant in Thailand ‹ Danieli

156B Danieli and Meranti Steel to cooperate on sustainable technologies for new green steel plant in Thailand – GreenSteelWorld.com

 

158D Meranti and Danieli sign MoU for new green steel plant in Thailand — Trade Fair

159A ANDRITZ carbon capture plant is now operating successfully at voestalpine

161A H2 Green Steel raises €1.5 billion in equity to build the world’s first green steel plant  — H2 Green Steel

 

161C FINAL-EN-H2-Green-Steel-raises-E1.5-billion-in-equity-financing.pdf

162B H2 Green Steel is the first manufacturing company to join Exponential Roadmap Initiative as Climate Solutions Company

 

162A H2 Green Steel collaborates with Volvo Group for supply of near zero emissions steel

163 Salzgitter orders one of Europe’s largest green hydrogen plants from ANDRITZ

163B Salzgitter orders 100 MW green hydrogen plant from ANDRITZ for low CO2 steel production: SALCOS – Green Car Congress

 

163A Salzgitter orders one of Europe’s largest green hydrogen plants from ANDRITZ | Salzgitter AG

 

Corporate Profile Video|JFE Steel Corporation

85C Carbon Neutral Initiatives|JFE Steel Corporation

172 013-07.pdf BLAST FURNACE RECICLADO

173 Technical Reports- No.28|JFE Steel Corporation (many papers inside)

179 Technical Reports- No.29|JFE Steel Corporation (many papers inside)

180 JFE Steel Releases Video about Efforts to Achieve Carbon Neutrality|JFE Steel Corporation

 

165 Integrated Report & ESG Data Book|KOBELCO Kobe Steel,. Ltd. (many papers inside)

 

165A Sustainability Management|KOBELCO Kobe Steel,. Ltd.

171B Kobe Steel managed to reduce carbon emissions by 25% in a large blast furnace

171A Kobelco Group’s CO₂ Reduction Solution for Blast Furnace Ironmaking Enhanced | KOBE STEEL, LTD.

 

166A Environment Severstal

https://severstal.com/eng/sustainable-development/environment/

167 EVRAZ – Corporate website

167A EVRAZ Climate Change

168A Green hydrogen for iron | H2 Green Steel in talks to build $6bn green steel plant in Quebec | Hydrogen news and intelligence

 

170A Biden-Harris Administration Announces Regional Clean Hydrogen Hubs to Drive Clean Manufacturing and Jobs | The White House

 

170 Biden-Harris Administration Announces $7 Billion For America’s First Clean Hydrogen Hubs, Driving Clean Manufacturing and Delivering New Economic Opportunities Nationwide | Department of Energy

 

171C Kobe Steel cuts BF carbon emissions by 25% at Kakogawa Works with new technology

 

182 JSW readies for CBAM era with 4 mt green steel unit | Mint

183A With Support From the EU, Italian Engineering Firm to Build Pilot Hydrogen Steel Plant 10/26/2023 – The European Commission and the Italian Ministry of Enterprises are throwing support behind a research project that aims to establish a fully hydrogen-fueled steelmaking plant. – Buscar con Google

 

185 GravitHy, pioneer in the low-carbon iron market reveals its progress related to its future plant in Fos-sur-Mer

 

187A SALCOS® milestone reached – Salzgitter AG awards contract for direct reduction plant | Salzgitter AG

 

188 Vale and GravitHy to jointly evaluate hydrogen-powered plant | EIT

102 European Steel 2019-2024

102A 20190514_Eurofer_Manifesto-A4-2.pdf

102B Map of key low-CO2 emissions projects in the EU steel industry

102C A Green Deal on Steel

192A EDP and ArcelorMittal sign agreement for green hydrogen project for steel production in Brazil | edp.com

192B ArcelorMittal and EDP to study the use of green hydrogen in steel production in Brazil – Green Car Congress

194 IEEFA | Institute for Energy Economics and Financial Analysis

196 Major Japanese steelmakers face high bar for decarbonization – The Japan Times

197 We are ISPT – the Institute for Sustainable Process Technology

197A How to get there: a circular and carbon-neutral process industry

197B Green hydrogen is essential for the future energy supply

197C ISPT – Institute for Sustainable Process Technology – YouTube

197D Deep-dive in a 1-GW scale green-hydrogen plant – YouTube

https://www.nipponsteel.com/en/ir/library/pdf/20210330_ZC.pdf

106 Saarstahl EAF conversion on track – Recycling Today

123B SSAB’s Revolutionary Steel: A Game-Changer for the Industry’s Green Transition | EuropaWire.eu

127D 67 Download Center – SSAB

128A Utility Global Partners with Stelco for The Decarbonization of Integrated Steelmaking – Hydrogen Central

 

143 TMS Kent Environmental

146C Hydnum Steel and Primetals plan green steel mill in Spain — Trade Fair

 

150 131A Climate action | ArcelorMittal

154B A Coalition Led by Nucor Publishes The Global Steel Standard to Measure and Report Greenhouse Emissions

 

154C Global Steel Climate Council

164 Energy & environment – Jernkontoret

181 Environmental Process 20.pdf

168 Swedish Industrialists Explore $6 Billion Canada Steel Project – Bloomberg

186 Industrial Decarbonisation – Materials Processing Institute

 

06    INTERNATIONAL PRODUCTION  PLANTS  and CARBON CAPTURE,THE USE OF HYDROGEN AS REDUCING AGENT   03  2024  

 

Press Release | arpa-e.energy.gov

EU Climate Action – December 2024

Mittal: Better Policy Needed to Preserve European Steelmaking – Association for Iron & Steel Technology

Steel Thoughts: Europe must make a choice on the steel industry | ArcelorMittal

187 SALCOS®: The Hydrogen Revolution in Steelmaking | Tenova

ArcelorMittal delays decarbonisation plans citing EU policy gap | Enlit World

Swedish Government OKs SSAB Mini-Mill – Association for Iron & Steel Technology

SSAB receives environmental permit to transform steel plant in Luleå – SSAB

004 SSAB continues the transformation with a fossil-free mini-mill in Luleå, Sweden – SSAB

SSAB is awarded financing from EU and Swedish Agency for Economic and Regional Growth – SSAB

SSAB fossil-free steel – Buscar con Google

SSAB plants – Buscar con Google

Omniseal-Solutions&apos; Infographic: Renewable Hydrogen Energy – Omniseal-Solutions-Infographic-Hydrogen-Energy.pdf

 

Renewable Carbon Free Seals | Hydrogen Sealing Solutions

SDI Announces Science-Based CO2 Intensity Targets – Association for Iron & Steel Technology

Danieli Inks Contract for Hydrogen-Powered Rebar Mill – Association for Iron & Steel Technology

Low carbon industrial manufacturing solutions | Low Carbon Solutions

003 €265 million Swedish State aid

Blastr Green Steel strengthens strategic partnerships and raises development financing for ultra-low CO2 steel value chain

 

Blastr Green Steel Chooses Primetals Technologies as Technological Partner for Low-Carbon-Emissions Plant

 

Midrex and Primetals selected by Blastr – Midrex Technologies, Inc.

A review of the current environmental challenges of the steel industry and its value chain – ScienceDirect

 

Environment & Energy|NIPPON STEEL ENGINEERING

Research & Development for Global Warming Prevention | Environmental activities | Environment & CSR | NIPPON STEEL

 

Sustainability Report | Sustainability | NIPPON STEEL

Contributing to Creation of a Circular Economy | Environmental activities | Sustainability | NIPPON STEEL

 

somers julian steel – Buscar con Google

Development of a Low CO2 Iron and Steelmaking Integrated Process Route for a Sustainable European Steel Industry | LoCO2Fe | Project | Fact sheet | H2020 | CORDIS | European Commission

 

how to decarbonise steel – Buscar con Google

steel industry emissions – Buscar con Google

steel industry energy consumption – Buscar con Google

steel decarbonisation roadmap – Buscar con Google

The impact of decarbonising the iron and steel industry on European power and hydrogen systems – ScienceDirect

 

Carbon Solutions | Resources, Energy and Environment | Products | IHI Corporation

Trial carbon capture unit begins operating on blast furnace at ArcelorMittal Gent, Belgium | ArcelorMittal

ArcelorMittal provides update on its European decarbonization plans | ArcelorMittal

 

Carbon Capture Systems | Bright Renewables

A blast furnace CO2 capture trial has begun between MHI and ArcelorMittal Gent – Carbon Capture Technology Expo Europe 2024

 

Scientists discover a method to convert CO2 into household chemicals through using a catalyst – Carbon Capture Technology Expo Europe 2024

 

Carbon Capture Industry News from Around the World

Registration Europe 2024 – Carbon Capture Technology Expo Europe 2024

Direct Air Capture Technology | 1PointFive

Carbon Removals ebook | Puro.earth

Carbon capture concept – schematic – CCS-Concept-Schematic.pdf

Carbon-capture-storage-utilisation-Linde-BASF_tcm19-462558.pdf

Understanding carbon capture and storage – British Geological Survey

(3) (PDF) Recent progress and new developments in post-combustion carbon-capture technology with amine based solvents

 

carbon capture technology – Buscar con Google

U.S. Department of Energy announces financial support for ArcelorMittal’s anticipated World-Class Electrical Steel facility in Alabama

JSW Steel to Explore Carbon Capture at Vijayanagar Plant – Association for Iron & Steel Technology

BHP, Carbon Clean and JSW Steel sign agreement to explore Carbon Clean’s CycloneCC technology for at-scale implementation in steelmaking

 

Carbon Capture Technology Company | Carbon Clean

Carbon capture eBooks | Carbon Clean

Industrial decarbonisation

BHP, Carbon Clean, and JSW Steel sign agreement to explore Carbon Clean&apos;s CycloneCC technology

Environment | BHP

BHP, JSW, and Carbon Clean team up to decarbonise India’s steel

Jamkhani Coal Project – Market Research Reports & Consulting | GlobalData UK Ltd.

 

SHS Group Chooses Technology Suppliers for Process Conversion – Association for Iron & Steel Technology

 

Dillinger and ROGESA selects Midrex and Primetals for Major Decarbonization Project – Midrex Technologies, Inc.

POSCO plans to produce all steel using hydrogen by 2050

POSCO to Make All Steel with Hydrogen Reduction Steel Technology by 2050 – Businesskorea

Posco plans 1mty hydrogen steelmaking plant by 2030 – EUROMETAL

Thinking About Decarbonization, ArcelorMittal Reimagines the Blast Furnace – Association for Iron & Steel Technology

 

ArcelorMittal BIO commissions a first for the European steel industry, converting waste wood into bio-coal to reduce fossil coal consumption | ArcelorMittal

Torero BIO officially commissioned – ArcelorMittal in Belgium

ArcelorMittal BIO Belgium to convert waste wood into bio-coal for carbon reduction

France: ArcelorMittal DECAR accelerates its decarbonisation with a €1.7 billion investment programme in France, supported by the French Government | ArcelorMittal

ArcelorMittal Moves French Decarbonization Project Forward  | Sustainability & Social Responsibility

World-first trial of new technology to recycle CO2 emissions from steel production begins at ArcelorMittal Gent, Belgium | ArcelorMittal

World-first trial of new technology to recycle CO2 emissions from steel production begins at ArcelorMittal Gent, Belgium – ArcelorMittal Europe

 

Home – D-CRBN

Salzgitter secures green electricity supply from Vattenfall

RWE and Salzgitter Group sign green PPA | Salzgitter AG

78A SALCOS® – Climate Initiative for Low CO2 Steel Production

Arcelor, France DECARB Plan to Invest €1.8 Billion to Cut Emissions – Bloomberg

Baosteel Zhanjiang launches DRI plant with a capacity of 1 million tons per year

Baosteel Zhanjiang Iron & Steel Co Ltd – Global Energy Monitor

Second Energiron® DRI plant in China ‹ Danieli

144A Mercedes-Benz and H2 Green Steel announce agreements in both Europe and North America  — H2 Green Steel

 

Cleveland-Cliffs Completes Successful Blast Furnace Hydrogen Injection Trial at Indiana Harbor #7 Blast Furnace :: Cleveland-Cliffs Inc. (CLF)

Cliffs completes H2 injection trial at its BF – Stainless Steel Club

Cleveland-Cliffs announces new emissions reduction targets

001 Cleveland-Cliffs Announces New Greenhouse Gas Emissions Reduction Goals :: Cleveland-Cliffs Inc. (CLF)

 

Tenova LOI Thermprocess’ HPH®-BAF for thyssenkrupp | Tenova

Search | Tenova (Many Informations)

LOI_Steel_Strip_HPH_EN.pdf

Japan’s largest steelmaker claims hydrogen injection has cut its test blast furnace emissions by a third | Hydrogen news and intelligence

 

El hidrógeno verde sustituirá a los combustibles fósiles en sectores difíciles de descarbonizar en España

 

Expertises | Naval Group MINI RECTOR NUCLEAR

NUWARD (réacteur) — Wikipédia

Le projet NUWARD™ SMR | Groupe EDF

(115) Making Green Steel with HydrogenMUCHOS – YouTube

SSAB Americas advances HYBRIT trials; company&apos;s Iowa mill to conduct first full heat using hydrogen-reduced sponge iron on Tuesday. | Industry Intelligence Inc.

 

HYBRIT: Successful trials using fossil-free fuels in the pellet process – SSAB

Emission credits from fossil-free steel in 2026 – SSAB

Sweden pioneers green steel production, using hydrogen rather than coal – YouTube

SSAB Highlights Decarbonization Efforts at COP29 – Association for Iron & Steel Technology

 

SSAB at COP29: Time to commit to ambitious climate plans to drive the transition forward – SSAB

 

SSAB calls for decarbonization unity – Recycling Today

SSAB : Danieli chosen as technology provider for fossil free steel mini mill in Luleå, Sweden SSAB – MarketScreener

European Commission OKs Sweden’s Financial Support for SSAB Project – Association for Iron & Steel Technology

State aid

006 HYBRIT: Six years of research paves the way for fossil-free iron and steel production on an industrial scale – SSAB

 

005 2024-State-of-the-European-Hydrogen-Market-Report.pdf

SSAB Contracts Engineering Partner for Mini-Mill Build – Association for Iron & Steel Technology

002 Presentation_Martin-PEI-SSAB.pdf

009 AFRY selected as a main engineering partner for SSAB’s fossil-free steel project in Sweden | AFRY

 

EU approves German state aid to ArcelorMittal for decarbonisation | Reuters

HyProvide® X-series 6 MW modular electrolysers

What is fossil-free steel and when will production start? – YouTube

  1. S. Steel and CarbonFree Sign Definitive Agreement to Capture Carbon Dioxide Emissions at One of the Largest North American Integrated Steel Mills :: United States Steel Corporation (X)

 

Decarbonization Membership Survey 2024 – NEW – Online Survey Software | QuestionPro Survey

 

Christopher W. Jones- &apos;Tecnologías de captura y transformación del CO2 en productos valiosos&apos; – YouTube

 

Captura de CO2 atmosférico: tecnologías para un futuro sostenible&apos; (español) – YouTube

 

Slide 1 – SteelConsult-Presentation-CO2.pdf

Steel Manufacturing | Pollution Control Equipment | Monroe Environmental

Paul Wurth

Danieli selected as technology provider for fossil-free steel mini-mill in Luleå, ‹ Danieli

U.S. Steel partners with CarbonFree to capture carbon emissions from one of North America’s largest steel mills  | Plant Services

About the magazine – GreenSteelWorld.com

Tata Steel to import liquid hydrogen from Norway to Netherlands for green steelmaking | Hydrogen Insight

Tata Steel to Study Liquid Hydrogen Imports – Association for Iron & Steel Technology

Tata Steel and ECOLOG are collaborating on a liquid hydrogen and CO2 corridor between Norway and Amsterdam.

Tata Steel advances Green Steel plan: basic engineering contracts awarded to Danieli and Tenova

 

Rio Tinto to develop BioIron™ R&D facility in Western Australia to test low-carbon steelmaking

Rio Tinto to build $143 million test facility in Western Australia; facility 10 times larger than predecessor, to further assess BioIron low-carbon ironmaking process. | Industry Intelligence Inc.

Rio Tinto to Invest $143 Million in New Low Carbon Steel Project – ESG Today

 

JSW Energy&apos;s maiden green hydrogen plant to begin operations in March 2025: CEO

US DOE recognizes JSW Steel USA for its ESG initiatives | Capital Market News – Business Standard

DOE Recognizes JSW&apos;s Energy Savings – Metal Center News – Solutions for Profitable Distribution

 

Indian steel giant to start using green hydrogen within two years | Hydrogen Insight

Stegra – Decarbonizing at scale – Stegra

Stegra green iron – ironmaking with green hydrogen – Stegra

Stegra green steel – near-zero emission steel – Stegra

H2 Green Steel changes name to Stegra – GreenSteelWorld.com

H2 Green Steel Is Now Stegra – Buscar con Google

007 IAS Steel Conference

BlueScope Steel Partners with Green Iron Company – Association for Iron & Steel Technology

 

Australia&apos;s BlueScope Steel signs green iron agreement with Helios | Reuters

Vale Selects Partner for Electrolyzer Feasibility Studies  – Association for Iron & Steel Technology

 

Vale and Green Energy Park Partner to Develop Green Hydrogen Supply Chain in Brazil for Future Mega Hub | Business Wire

Vale and GEP partner in hunt for Brazilian green hydrogen opportunities

 

Steel Dynamics Announces Certified, Science-Based Greenhouse Gas Targets | Steel Dynamics

Sustainability | Steel Dynamics

World&apos;s First GSCC Certified, Science-Based Emissions Targets Set by a Steel Producer – Steel Dynamics, Inc. – Global Steel Climate Council

 

Global Steel Climate Council

Hyundai Steel Hires Help for Hydrogen Injection Tests – Association for Iron & Steel Technology

 

Current News of Primetals Technologies

PRIMETALS TECHNOLOGIES, LIMITED Negative News Screening

https://www.hyundai.com/th/en/hyundai-story/innovation/hydrogen-value-chain#none

EMSTEEL Starts Green Hydrogen Steelmaking Demonstration – Association for Iron & Steel Technology

EMSTEEL and Masdar Announce Success of Pilot Project Using Green Hydrogen to Produce Green Steel – EMSTEEL

 

07    INTERNATIONAL PRODUCTION  PLANTS  and CARBON CAPTURE,THE USE OF HYDROGEN AS REDUCING AGENT   04  2025 

 

A 00 Alexander-INTERESANTIS INTROD FLEISCHANDERL.pdf

A 001 Using 100% Hydrogen on an Industrial Scale to Reheat Steel Before Rolling – Using-100-Hydrogen-on-an-Industrial-Scal.pdf

 

A 002 Reducing Risk in New Green Steel Projects — The Wasmund Approach – Reducing-Risk-in-New-Green-Steel-Projects.pdf

 

Hydrogen on an Industrial Scale – Buscar con Google

Hydrogen on an Industrial Scale to Reheat Steel Before Rolling – Buscar con Google

Tenova and Coolbrook Partner to Produce Green Technology – Association for Iron & Steel Technology

 

Home – The Coal Hard Truth (interesting)

Gascade starts commissioning of hydrogen pipeline in Germany

EU signs EUR 4.2bn in grant deals for 77 decarbonisation projects

Webinar: The SSAB Zero™ EPDs are here – let’s dive into the results

 

Australia&apos;s Fortescue partners with China Baowu to tackle steel industry decarbonisation | Reuters

 

01 (PDF) Hydrogen-based Steel Making -The future?

02 circored—fine-ore-direct-reduction.pdf

03 D7.4.Environmental life cycle assessment intermediary report.pdf

fossil-free ssab – Buscar con Google

 

04 SSAB Domex 500ML – acero laminado termo-mecánicamente a 500 MPa – SSAB

05 Guideline On Green Steel | PDF | Steelmaking | Nature

06 Iron and Steel Technology Roadmap – Analysis – IEA

06B Green solution in steelmaking

08 PowerPoint Presentation – S5.4_20191010BostonMetalIEADecarbonization2019.pdf

09 srccs_wholereport-1.pdf  (Report  443 pp)

10 Water main pipes – SSAB

11 swd_2021_451_parts_1_to_3_en_0.pdf

24 (PDF What is green steel? -Towards a strategic decision tool for decarbonising EU steel

25 https://www.argusmedia.com/en/news/2014177-thyssenkrupp-tests-hydrogen-as-pci-replacement%20%20 – Buscar con Google

 

27 Grande Region Hydrogen – An initiative that aims to develop a hydrogen ecosystem

28A The Project Guideline of Low-carbon Metallurgy Innovation Fund of China Baowu 2022

28B Green solution in steelmaking

28C China Baowu Group

30 Low-Carbon Production of Iron & Steel: Technology Options, Economic Assessment, and Policy – Center on Global Energy Policy at Columbia University SIPA | CGEP

 

32 A fossil-free future – Hybrit

33 The world&apos;s first fossil-free steel ready for delivery – Hybrit

34 Biocoal – new, carbon neutral fuel for energy transition

35 Carbon Management: Implications for R&D in the Chemical Sciences and Technology – PubMed

 

 

THERE ARE SOME SPECIFIC REFERENCES INSERTED ABOUT GREEN HYDROGEN.

 

 

36 IEEFA: MENA Capable of Leading Green Iron and Steel Transition – Association for Iron & Steel Technology

 

36A MENA’s opportunity to lead the green iron and steel transition | IEEFA

37 MENA poised to lead global green iron and steel transition | IEEFA

38 Electricity Mix – Our World in Data

39 voestalpine researching into hydrogen plasma for green steel production in an international showcase project – voestalpine

 

40 Latest Hydrogen and Power-to-X News | Renewables Now

41 EC unveils plan to boost steel and metals industry | Hydrogen News | Renewables Now

42 Boston Metal Takes a Step Toward Commercializing Green Ironmaking Process – Association for Iron & Steel Technology

 

42B You searched for dIRECT REDUCTION WITH h2 – Boston Metal

43 This startup just hit a big milestone for green steel production | MIT Technology Review

43A The world’s first industrial-scale plant for green steel promises a cleaner future | MIT Technology Review

 

43B Green steel: 10 Breakthrough Technologies 2025 | MIT Technology Review

SSAB – Buscar con Google

44 EPDs for SSAB Zero™ – SSAB

44A Everything you need to know about the new environmental declarations for SSAB Zero™

 

44A P Seminario web: EPD de SSAB Zero™

44B P Centro de descargas – SSAB

44C Acero de alta resistencia de SSAB – chapa, placa, bobina, tubo, perfil – SSAB

44 D 01 Deputy Prime Minister, SSAB CEO Break Ground on New Steel Mill in Luleå – Association for Iron & Steel Technology

 

44D 02 The Deputy Prime Minister and SSAB&apos;s CEO broke ground on a new steel mill in Luleå – SSAB

 

44D 03 Danieli

45 Sterlite proposes USD 6bn plan for green hydrogen power grid in Egypt

46 Direct from Midrex 2022- Midrex Technologies, Inc.

46A Midrex-DFM-1stQtr2025.pdf

46B Driving Global Sustainability in Iron & Steelmaking | Midrex Technologies, Inc.

46D Impact of Hydrogen DRI on EAF Steelmaking – Midrex Technologies, Inc.

 

47 2024-sustainability-report.pdf ARCELOR

 

48 EPD-Open-sections-1.pdf

49 Using-100-Hydrogen-on-an-Industrial-Scal – Buscar con Google

50 JRC Publications Repository – Technologies to decarbonise the EU steel industry

51 Supporting steelmakers in their energy transition | Calderys, part of Imerys High Temperature Solutions

 

52 Breakthrough technologies – greentec steel

53 Golden paths to green steel – voestalpine

54 Time for the next webinar on fossil-free steel – register today!

55 Hydrogen Utilization in Iron and Steelmaking Processes – Buscar con Google

56 texto_completo.pdf  (Review)

‪56A Manuel Bailera – ‪Google Académico

56B Revista El Pollo Urbano

57 Hydrogen Utilization in Iron and Steelmaking Processes | NEDO Green Innovation Fund Projects

58 Green solution in steelmaking

59 Utilization and impacts of hydrogen in the ironmaking processes: A review from lab-scale basics to industrial practices – ScienceDirect

https://www.meti.go.jp/english/policy/energy_environment/global_warming/gifund/pdf/20230111_005.pdf

 

61 Hydrogen in Steel:LIBRO Effect of Hydrogen on Iron and Steel During Production … – Michael Smialowski – Google Libros

62 118 Metals | Free Full-Text | Hydrogen Ironmaking: How It Works

63 Utilization and impacts of hydrogen in the ironmaking processes: A review from lab-scale basics to industrial practices | Request PDF

64 (PDF) Production and Technology of Iron and Steel in Japan during 2022

65 GREINS – Green Innovation Fund Project Hydrogen Steelmaking Consortium

66 Hydrogen in Iron and Steelmaking:  Ore-Based Metallics & Carbon-Neutral Steel | Midrex Technologies, Inc. (Many References)

 

67 14. Is carbon capture too expensive – Adam Baylin-Stern, Niels Berghout, IEA Commentary — 17 February 2021 – Buscar con Google

67A Is carbon capture too expensive? – Analysis – IEA

68 48 The potential of hydrogen for decarbonising steel production – EPRS_BRI(2020)641552_EN.pdf

 

69 Call for open debate on CCU and CCS to save industry emissions | Clean Energy Wire

70 Electrolysis may one day provide &apos;green iron&apos; | New Scientist

71 A Green iron Plan fo Australia: Securing prosperity in a decarbonising world | The Superpower Institute

 

72 Recordatorio: EPD de SSAB Zero™

73 Danieli to Supply SSAB’s New Green Mini-Mill – Association for Iron & Steel Technology

73A SSAB and Danieli signed a contract on the technology solution for the new Luleå mini-mill – SSAB

73B Fossil-free steel mini-mill to produce specialty hot-rolled strip in Luleå, Sweden ‹ Danieli

73C The Danieli intelligent competitive green metal ‹ Danieli important

74 SSAB to Supply Recycled Steel to Volvo Cars – Association for Iron & Steel Technology

74A How recycled steel from SSAB helps us unlock CO₂ emission cuts | Volvo Cars ZA

74B SSAB high-strength steel – sheet, plate, coil, tube, profile – SSAB

75 Green iron and steel offer MENA a chance to shine | IEEFA

79 Carbon capture and utilization in the steel industry: challenges and opportunities for chemical engineering – ScienceDirect

80 SSAB Locks Up Financing for Green Mini-Mill – Association for Iron & Steel Technology

80A SSAB secures additional EUR 430 million green financing for Luleå – SSAB

Development and progress on hydrogen metallurgy | SpringerLink

81 Tenova to Supply Technology for Australian Green Steelmaking Project – Association for Iron & Steel Technology

81A Tenova Selected for Australia’s Low-Emission Steelmaking Pilot | Tenova

81B Tenova to supply DRI technology to NeoSmelt’s project in Australia

82 ARENA Awards Calix AU$44.9 Million Grant For Green Iron Demonstration Plant – Association for Iron & Steel Technology

 

82A Calix executes $44.9m ARENA grant agreement for ZESTY Green Iron Demonstration Plant

 

83 2025 Water- Highlights-7.22.25-JM

84 POSCO Group, JSW Steel Partner to Assess Indian Integrated Steel Plant – Association for Iron & Steel Technology

84A JSW – JSW Steel and POSCO Group Sign Heads of Agreement

85 Webinar: New milestones in the transition to decarbonized steel

86 V nuclear hydrogen production FOR iron and steelmaking – Buscar con Google

87 The role of hydrogen in iron and steel production: Development trends, decarbonization potentials, and economic impacts – ScienceDirect

91 The European Green Deal – European Commission

96 Carbon Border Adjustment Mechanism – Taxation and Customs Union

 

—————————–

FROM 89   to  99.008  EUROPEAN CONFERENCE

89 EU Environment and Climate | LinkedIn

90 CLIMATE ACTION THAT WORKS FOR YOU – Streaming Service of the European Commission

92 European Climate Law – Climate Action – European Commission

93 About the EU ETS – Climate Action – European Commission

94 NextGenerationEU: for a stronger, more resilient Europe – European Union

95 EU Emissions Trading System (EU ETS) – Climate Action – European Commission

97 REPowerEU

98 The Green Deal Industrial Plan – European Commission

99 European Critical Raw Materials Act – European Commission

99.01 The Net-Zero Industry Act

99.02 Zero Pollution Action Plan – Environment – European Commission

99.04 Climate action and the Green Deal

99.05 Research and innovation for the European Green Deal

99.06 Industry and the Green Deal

99.07 European Clean Hydrogen Alliance – European Commission

99.008 Climate action that works for you – An agenda for competitiveness, prosperity and resilience – European Commission

 

—————————–

 

99.010 Jindal Steel Turns to Danieli for Second Hydrogen-Ready DRI Plant – Association for Iron & Steel Technology

 

99.010. Danieli

https://www.danieli.com/en/news-media/news/Jindal-Steel-orders-second-hydrogen-ready-DRI-plant-in-Oman_37_997.htm

 

99.010 Indian steel giant plans second &apos;hydrogen-ready&apos; direct-reduced iron plant in Oman | Hydrogen Insight

 

99.010 Jindal Steel has ordered a second direct reduction plant for its project in Oman

99.011 V 112A Home Page | ArcelorMittal

99.013 JSW – Leading Steel Manufacturing Company in India

99.014 HYUNDAI STEEL

99.015 Danieli to Upgrade Turnkey Meltshop for ArcelorMittal Sestao – Association for Iron & Steel Technology

 

99.016 Construction Starts for Hydrogen-Based Ironmaking Plant

99.017 Hy4Smelt: Construction on Austria’s largest climate action research project starts at the voestalpine site in Linz – voestalpine

 

99.018 SHS Secures €1.7Bn to Launch Power4Steel Green Hydrogen Steel

99.019 Hydrogen Technology World Expo: Future of Clean Energy

99.021 IEEFA: Oman a Frontrunner in the Green Steel Transition – Association for Iron & Steel Technology

99.021A Oman at the frontline of the green steel transition | IEEFA

99.023 Rio Tinto Partners With Australian Green Iron Tech Developer – Association for Iron & Steel Technology

99.023A Rio Tinto partners with Calix to test low-emissions steel making in Western Australia, pauses BioIron | Global

99.023B Rio Tinto partners with Calix to test low-emissions steel making in Western Australia, pauses BioIron

 

99.024 Climate change and the production of iron and steel – 2025 – worldsteel.org

99.025 Webinar about CBAM updates – register today

99.026 Primetals Technologies Selected to Supply Two Green Production Lines for Xuân Thiện Group – Association for Iron & Steel Technology

99.026A Xuân Thiện Partners with Primetals Technologies for Two Production Lines

99.026B Microsoft Word – PR2025123563en.docx – PR2025123563en.pdf

 

99.027 Developing decarbonisation roadmaps – case studies & insights from Australia&apos;s manufacturing sector – YouTube

99.028 Pathways to Blast Furnace-Based Decarbonization – YouTube

99.029 ArcelorMittal expands its portfolio of renewable energy projects | ArcelorMittal

82 Climate change and the production of iron and steel – worldsteel.org

83 Climate_PP_September-2024-1.pdf

84 Climate change and the production of iron and steel – Buscar con Google

85 Sustainability Indicators Report 2025 – worldsteel.org

85A Home – World Hydrogen Week 2025

86 World Energy Outlook 2025 – WorldEnergyOutlook2025.pdf  (pp 519)

87 Australian Alliance for Energy Productivity – YouTube

 Ikerbasque steelmaking – Buscar con Google

99.031 ArcelorMittal Announces Three Green Energy Projects in India – Association for Iron & Steel Technology

 

99.032 Algoma Steel Shuts Down Cokemaking, Looks to Green Steel Future – Association for Iron & Steel Technology

99.032A Algoma Steel Looks to the Future – Algoma Steel

99.032B Algoma Steel ends coal-based steelmaking as EAF transition advances-Yieh Corp. Steel News

 

99.033 El Hidrógeno como vector energético. Tecnun. Universidad de Navarra – Curso de formación superior. El Hidrógeno como vector energético

 

99.034A Session 3 – Part 1 | The Breakthrough Technology Conference 2025 – YouTube

99.034B Keynote Speeches | The Breakthrough Technology Conference 2025 – YouTube

 

99.034C Panel discussion 2 | The Breakthrough Technology Conference 2025 – YouTube

99.034D Donald Sadoway at EmTech MENA 2019: Steel Production without Co2 Emissions – YouTube

 

99.035 PowerPoint Presentation – 5.-Christopher-PAGE.pdf

99.036 Breakthrough 2023Technology Conference 2023 – worldsteel.org

 

99.036.01Breakthrough2025 Technology Conference 2025 – worldsteel.org

 

99.036A PowerPoint 프레젠테이션 – Presentation_Sedon-CHOO_POSCO.pdf

99.036B POWERPOINT templates – Presentation_Alexander-FLEISCHANDERL-Primetals-Technologies.pdf

 

99.036C Tenaris Presentation – Presentation_Fernando-ACTIS-Ternium.pdf

99.036D Presentation_Hideki-MURAKAMI-Nippon-Steel-Corporation.pdf

99.039 Towards a sustainable industry | Download the publication

99.040 Présen transf eu steel industry 2025 – 3.-Klaus-PETERS-1.pdf

99.041 PowerPoint Presentation – Presentation_Thomas-HANSMANN-SMS.pdf

99.042 GSCC Announces Record: 12 Nucor Mills Receive Certification for Green Hot-Rolled Steel Products – Association for Iron & Steel Technology

 

99.043 Tata Steel, Jharkhand Invest in Green Steel – Association for Iron & Steel Technology

99.043A Tata Steel invests $1.2 billion in green steel technology in Jharkhand

99.044 SSAB Luleå Project Recognized as Net-Zero, Supplies Green Steel to Rheinmetall – Association for Iron & Steel Technology

 

99.044B SSAB’s investment in Luleå recognized as a net‑zero project by the EU – SSAB

99.044C SSAB and Rheinmetall sign agreement for fossil-free steel deliveries – SSAB

2026 SSAI Targeted_2.3.26_JM

99.046 ArcelorMittal confirms the construction of an electric arc furnace in Dunkirk, France: a €1.3 billion investment supporting an important step in its decarbonisation | ArcelorMittal

99.047 ArcelorMittal announces the publication of its Annual Report 2025 on Form 20 F and the publication of its 2025 annual report | ArcelorMittal

 

99.048 Algoma&apos;s EAF is Running Around the Clock – Association for Iron & Steel Technology

99.049 Yamato Kogyo: First Japanese Steelmaker to be Certified by GSCC – Association for Iron & Steel Technology

 

99.049 A Yamato Kogyo Group

99.049 B yamatokogyo_ir2025_e_A3.pdf

https://www.yamatokogyo.co.jp/en/ir/pdf/yamatokogyo_ir2025_e_A3.pdf

99.050 EU Climate Action – financing decarbonisation, strengthening carbon markets

99.051 Low-carbon production of iron and steel: Technology options, economic assessment, and policy Zhiyuan Fan1,* and S. Julio Friedmann1 – Buscar con Google

 

99.052 Tata Steel Teams With University of Science and Technology Beijing for Green Steel Research – Association for Iron & Steel Technology

 

99.052A Tata Steel Signs MoU with University of Science and Technology Beijing to advance low-carbon steelmaking

 

 

NEW LOOKING FROM SSAB  2026

 

————————-

SSAB ÅR 2025 ENG – 82dc4b95e96a55ad.pdf  (Annual Report  pp 189)

SSAB’s transformation – SSAB

Insights about fossil-free steel – learn more – SSAB

SSAB story – SSAB

SSAB and POSCO co-hosts global forum for the future – SSAB

Let’s go sustainable – SSAB

Fossil-free steel production – What you need to know – SSAB

Pure Waste™ – Why is water the by-product in the end? – SSAB

Sustainability – SSAB

HYBRIT patent – key for sharing around the world – SSAB

Sustainable design – SSAB

 

————————-

 

08 CONFERENCES ABOUT CLIMATE CHANGE  COP

 

Introduction to Science in the UNFCCC | UNFCCC

 

Event: 2024 UN Climate Change Conference (UNFCCC COP 29) | SDG Knowledge Hub | IISD

 

2027 United Nations Climate Change Conference – Wikipedia

https://en.wikipedia.org/wiki/2027_United_Nations_Climate_Change_Conference

COP28: La acción por el clima no puede esperar | Naciones Unidas

 

COP 29 2024 – Buscar con Google

 

COP30 Brasil Amazônia – Español

 

UNFCCC COP 31

 

Ethiopia Selected to Host COP 32 Climate Summit in 2027

 

 

WEBINAR CONFERENCES FROM AIST

 

(51) The future of Green Steel Production – Webinar Replay – YouTube

Webinar Deep dive into the decarbonization of the steel industry – Reclaim Finance

 Renewable portfolio M&A in Italy 🟠 – YouTube (many)

99.009 AIST Decarbonization Subcommittee – Challenges Around Synthetic Hot Metal Coming From Smelters – YouTube

 

AIST Webinars -10.2025  YouTube

001 Introduction to Sustainable Steelmaking – YouTube

002 Hydrogen Part 2: Production, Applications and Challenges (AIST Decarbonization Webinar – YouTube

 

003 AIST Decarbonization Subcommittee Webinar – The Green Steel Revolution – YouTube

004 MENA Green Steel Webinar – YouTube

005 Sustainability & Decarbonization Webinar Series – Grants to Become Environmentally Sustainable – YouTube

 

006 Sustainability Learning Webinar: Part 1- Decarbonization and Greenhouse Gas Emissions – YouTube

 

007 Webinar: Decarbonising the Steel Sector – YouTube

008 Webinar Series 1008 | Industrial Decarbonization- Are Industries Ready for Green Hydrogen? – YouTube

 

009 AIST Decarbonization Subcommittee Webinar #8 – Ironing Out Carbon: The EAF & DRI Revolution – YouTube

 

010 Decarbonization Webinar Meeting Recording 8 Nov.2025 – YouTube

011 Developing decarbonisation roadmaps – case studies & insights from Australia&apos;s manufacturing sector – YouTube

 

012 Ironmaking With Alternative Reductants – YouTube

013 Pathways to Blast Furnace-Based Decarbonization – YouTube

014 Pathways to Blast Furnace-Based Decarbonization – YouTube

015 Blast Furnace Route Decarbonization Pathways, Part II – YouTube

016 H2 Injection Into the Blast Furnace – YouTube

017 The Evolution, Metallurgy and Operational Experience of EAF and SAF Steelmaking – YouTube

 

Decarbonization #6 Green Steel Labeling – YouTube

Decarbonization 102-Hydrogen Ironmaking-Managing Expectations of H2 Transformation & Its Many Colors – YouTube

 

Decarbonization 101-Exploring the Lifecycle Sources and Measuring of CO2 Emissions – YouTube

 

Webinar: Decarbonization opportunities through Green Hydrogen: Mining, Steel and Transport – YouTube

 

Incorporating Sustainability in Green Hydrogen Advancements – Webinar – YouTube

99.037 Remember to register to our webinar about CBAM

99.037A webinar about CBAM costs for steel – YouTube

99.037B webinar about CBAM costs for steel – Buscar con Google

99.037C webinar about CBAM – YouTube

99.037D Webinar: Less than one year to go until SSAB Zero™ from Oxelösund

99.038 Are you ready? Less than one year to large-scale production of SSAB Zero™ in Europe – SSAB

 

99.039 Donald Sadoway at EmTech MENA 2019: Steel Production without Co2 Emissions – YouTube

 

 Time to register for the webinar on the next steps for SSAB Zero™

 

WEBINAR CONFERENCES FROM UNIVERSITIES

 

Retooling steel production for a greener future – MIT Department of Materials Science and Engineering

Ensuring a durable transition – MIT Department of Materials Science and Engineering

 

—————————–

 

09 REDUCTION OF CO2 EMISSIONS INTO THE ATMOSPHERE

 

ULCOS

ULCOS – Buscar con Google

Achieving carbon-neutral iron and steelmaking in Europe through the deployment of bioenergy with carbon capture and storage – ScienceDirect

 

Microsoft PowerPoint – 20-3-1_Rubin – 20-3-1_Rubin.pdf

Ultra-Low CO2 steelmaking 19 015| ULCOS Project | FP6 | CORDIS | European Commission

 

ULCOS – estep_ulcos_nov_2010.pdf 19 016

Microsoft PowerPoint –  Jan van der Stel Ulcos TGRBF IEA workshop Tokyo.ppt – 1050 Jan van der Stel.pdf

 

https://publications.ieaghg.org/docs/General_Docs/Iron%20and%20Steel%202%20Secured%20presentations/1050%20Jan%20van%20der%20Stel.pdf

 

ULCOS – 2011-00612-E.pdf 19 018

Slide 1 – 40 013 20110321ATT15960EN.pdf

https://www.europarl.europa.eu/document/activities/cont/201103/20110321ATT15960/20110321ATT15960EN.pdf

 

Recent advances in carbon emissions 19 014 reduction: policies, technologies, monitoring, assessment and modeling – ScienceDirect

 

[PDF] Sustainable Aspects of CO2 Ultimate Reduction in the Steelmaking Process (COURSE50 Project), Part 1: Hydrogen Reduction in the Blast Furnace | Semantic Scholar

 

Metals | Free Full-Text | A General Vision for Reduction of Energy Consumption and CO2 Emissions from the Steel Industry | HTML

 

Metals | Free Full-Text | Society, Materials, and the Environment: The Case of Steel

 

IEAGHG

 

Carbon Capture & Storage – CCS research from SINTEF

Technologies and policies to decarbonize global industry_ Review and assessment of mitigation drivers through 2070 | Elsevier Enhanced Reader

 

Exploitation of projects for Low-Carbon future steel industry | Home Page

 

ULCORED

 

ULCORED – Buscar con Google

ULCORED Process –

CDP / SPL – 2_1430 Peter Sikstrom.pdf

Partial oxidation | Linde Engineering

syngas – Buscar con Google

HYL_NEWS_May_2017.pdf

MXCOL.pdf

COREX®/ MXCOL – Buscar con Google

corex iron making – Buscar con Google

DRI Production Using Coke Oven Gas (COG): Test Results of Thermal Reactor System™ (TRS®) – Midrex Technologies, Inc.

 

Midrex_RD_Brochure.pdf

https://www.lkab.com/en/about-lkab/lkab-in-brief/

ULCORED Process – IspatGuru

ULCORED |ANULADO Industrial Efficiency Technology & Measures

Ultra-Low CO2 Steelmaking Industrial Efficiency Technology & Measures

ULCORED SP 12 Concept for minimized CO2 emission | Metallurgical Research & Technology | Cambridge Core

 

 

REDUCTION OF CO2 EMISSIONS

 

Steel sector emissions must fall 75% under 2°C scenario | Wood Mackenzie

What Would It Take To Limit Global Warming To 1.5 Degrees? | Wood Mackenzie

Green metals: the journey to decarbonisation | Wood Mackenzie

Oil refining’s four big challenges | Wood Mackenzie

Horizons: Three Key Findings From Q2 2021 | Wood Mackenzie

The pathway to net-zero for miners | Wood Mackenzie

 

FUTURE PERSPECTIVES

 

Climate Initiative Steel |40 003 thyssenkrupp Steel

The Swedish Energy Agency Is Investing Heavily in a Carbon-Dioxide-Free Steel Industry

 https://www.energimyndigheten.se/en/

A002 NuScale, Nucor mull pairing SMR plants with steel mills — ANS / Nuclear Newswire

 

 10.ENVIRONMENTAL INSTITUTES AND COMPANIES

 

List of environmental organizations for iron and steelmaking – Buscar con Google

Global steel Climate Council – Buscar con Google

List of environmental organizations – Wikipedia

https://en.wikipedia.org/wiki/List_of_environmental_organizations#Governmental_agencies

Home Page | Harsco Environmental Harsco Environmental

Home – Institute for Energy and Environmental Research

Materials Processing Institute DIRECT REDUCTION

BFI EN INSTIT ALEMAN H2

Iron & steel – IEA

Data overview – IEA

19022 002 Iron and Steel – Analysis – IEA

Carbon capture, utilisation and storage – Fuels & Technologies – IEA

https://www.iea.org/fuels-and-technologies/carbon-capture-utilisation-and-storage

https://www.iea.org/reports/ccus-in-clean-energy-transitions/a-new-era-for-ccus#growing-ccus-momentum

 

IEAGHG

Home – Association for Iron & Steel Technology

We’re shaping a more responsible steel industry | ResponsibleSteel

IOM3 | Sustainable Future

Climate and energy EUROFER

Scaling Near Zero Emissions Iron and Steel – RMI

Sustainability – American Iron and Steel Institute

The Green Transition in the Nordic Countries: Lessons in Sustainable Development | Heinrich-Böll-Stiftung | Tel Aviv – Israel

Climate and environment – SINTEF

Carbon Capture & Storage – CCS research from SINTEF

Hydrogen as a future energy source: SINTEF Hydrogen research

Swerea MEFOS

Hatch – Consulting engineering and project implementation

Green hydrogen – John Cockerill – John Cockerill

Civil & Environmental Consultants, Inc.

The Possible Effects of Increased Federal Environmental Scrutiny | Civil & Environmental Consultants, Inc.

82B About CALIX

 

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