SOURCE-LINKED INTELLIGENCE
Green Transformation of Steel Scrap into Next-Generation Ultra-High-Strength Steel through Advanced Process Design
ined austenite) by the application of novel thermo-mechanical processing (TMP) techniques including hot rolling, intercritical annealing, and quenching & partitioning. Among the innovations is using machine learning-based scoping of alloys with TMP verification via experimentally validated methods, accelerating alloy discovery and tailoring required microstructure and mechanical properties. The approach is based on deep understanding of phase transformation, microstructure evolution, corrosion resistance, and weldability. My research will target guiding model development, optimizing alloy processing, and performance validation against industrial standards. Life Cycle Assessment (LCA) and techno-economic studies will evaluate the economic and environmental viability of these alloys, aiming to reduce the carbon content by over 60% compared to conventional Advanced High-Strength Steels (AHSS). Supported by Imperial College London and industry collaborators and aligned with the UN Sustainable Development Goals (SDG 9, 12, and 13), this project is pioneering sustainable, circular steel
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- recordType
- award
- status
- SIGNED
- region
- EU
- value
- 276187.92
- unit
- EUR
Evidence & attribution
European Commission, CORDIS Horizon Europe project dataset. Metadata adapted.
License: CORDIS reuse policy
First collected: 2026-09-20T04:21:15.460Z. This is not the publication date.