Observation of co-segregation of titanium and boron at the interface between recrystallized and unrecrystallized grains in cold-rolled interstitial-free steel sheets
Author:
Publisher
Elsevier BV
Subject
Instrumentation,Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials
Reference24 articles.
1. Influence of boron on the decomposition of austenite in low carbon alloyed steels
2. Intergranular Fracture of Iron and Effects of Trace and Alloying Elements
3. Effect of impurities on structural, cohesive and magnetic properties of grain boundaries in α-Fe
4. Recrystallization and Related Phenomena. Effect of Boron on Mechanical Properties and Recrystallization Behavior of Ti-added Ultra-low Carbon Cold-rolled Steel Sheets.
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1. First-principles interpretation toward the effects of Cu, Mg co-segregation on the strength of Al Σ5 (210) grain boundary;Journal of Materials Science;2024-01-23
2. Thermal stability of Ti-Nb-Fe ternary nanocrystalline alloys related to grain boundary segregation;Vacuum;2023-07
3. Effect of Alloying Elements on Grain Boundary Segregation of Boron and Carbon in α-Iron;Tetsu-to-Hagane;2023
4. Improving Shape Memory Effect in Fe-Mn-Si-Based Alloy by Reducing Annealing Twins Through Trace Boron Doping;2023
5. Effects of Grain Boundary Geometry and Boron Addition on the Local Mechanical Behavior of Interstitial-Free (IF) Steels;MATERIALS TRANSACTIONS;2021-10-01
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