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About this Symposium

Meeting MS&T26: Materials Science & Technology
Symposium New Frontiers in Physical Metallurgy of Steels
Sponsorship AIST Metallurgy—Processing, Products and Applications Technology Committee
Organizer(s) Konstantin V. Redkin, Redtech Alloys LLC
Maedeh Pourmajidian, Arcelormittal Global R&D - East Chicago
Hashem Mousavi Anijdan, Arcelormittal Inc.
Badirujjaman Syed, Arcelormittal Global Research and Development
Scope The symposium will focus on the physical metallurgy of steels with novel alloying concepts including increased levels of Mn, Al and Si. There are significant challenges in processing of these advanced steels to obtain microstructures and properties required for applications in the transportation and energy sectors. Contributions are sought that deal with novel microstructure concepts and processing strategies to manufacture high performance steels. A particular emphasis will be on steels with complex-phase microstructures including TRIP/TWIP and interface precipitation. The aim of the symposium is to provide an overview on the recent advances made in experimental and modelling studies as well as their industrial application.
Abstracts Due 05/19/2026

PRESENTATIONS APPROVED FOR THIS SYMPOSIUM INCLUDE


Characterization of Cold Spray Deposit on Lightweight Fe-Mn-Al Steel
Cu-Enabled NiAl Precipitation in a Mn-Stabilized Austenitic Steel
Driving AHSS Leadership: Tata Steel’s Six‑Month CRDP Development Success
Effect of Post-Processing Heat Treatment on the Hydrogen-Materials Interactions of Binder-Jet Printed 17-4PH Stainless Steel
Enhanced Cryogenic Impact Toughness in 9 wt% Ni Steel Through QLT Heat Treatment
Extended 12Cr Alloy System for High Temperature Application
Flow-Curve Constitutive Behavior and DIC-Measured Fracture Ductility of Automotive Sheet Steels: Voce Model Superiority and Microstructure-Driven Fracture Strain Ranking in DDQ, DP780, DP980, and TRIP590
Influence of Final Annealing Atmosphere on Surface Microstructure and Core Loss in Non-Oriented Fe-Si Alloy
Novel Heat Treatment Pathways for the Formation of Nano-Bainite and Retained Austenite in High-Al Medium-Mn Steels
Surface Film-Induced Elastic Bending Modulates Core Loss in Non-Oriented Fe-Si alloy
Yield Stress Anisotropy of the Cold-Rolled Pearlitic Steel Sheet with Super High Strength


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