Effects of Cu addition on resistance to hydrogen embrittlement in 1 GPa-grade duplex lightweight steels
Author:
Funder
Korea University
Publisher
Elsevier BV
Subject
Metals and Alloys,Polymers and Plastics,Ceramics and Composites,Electronic, Optical and Magnetic Materials
Reference91 articles.
1. Multistage strain hardening through dislocation substructure and twinning in a high strength and ductile weight-reduced Fe-Mn-Al-C steel;Gutierrez-Urrutia;Acta Mater.,2012
2. Novel ultra-high-strength (ferrite + austenite) duplex lightweight steels achieved by fine dislocation substructures (Taylor lattices), grain refinement, and partial recrystallization;Sohn;Acta Mater.,2015
3. Microstructures and mechanical properties of high-strength Fe-Mn-Al-C light-weight TRIPLEX steels;Frommeyer;Steel Res. Int.,2006
4. Tensile deformation of a duplex Fe-20Mn-9Al-0.6C steel having the reduced specific weight, Mater;Hwang;Sci. Eng. A,2011
5. Simulation of κ-Carbide Precipitation Kinetics in Aged Low-Density Fe-Mn-Al-C Steels and Its Effects on Strengthening;Lee;Met. Mater. Int.,2018
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