Predicting yield stress in a nano-precipitate strengthened austenitic steel by integrating multi length-scale simulations and experiments
Author:
Funder
US Naval Research Laboratory
Office of Naval Research
National Science Foundation
Publisher
Elsevier BV
Reference91 articles.
1. Brittle intermetallic compound makes ultrastrong low-density steel with large ductility;Kim;Nature,2015
2. The effect of isothermal aging on microstructure and mechanical behavior of modified 2.5Al alumina-forming austenitic steel;Jiang;Mater. Sci. Eng. A,2019
3. Strain hardening of novel high Al low-density steel consisting of austenite matrix and B2-ordered intermetallic second phase in the perspective of non-cell forming face-centered-cubic alloy with high stacking fault energy;Kim;Scr. Mater.,2019
4. Microstructural influence on mechanical properties of a lightweight ultrahigh strength Fe-18Mn-10Al-0.9C-5Ni (wt%) steel;Piston;Metals,2020
5. Mn-stabilized austenitic steel strengthened by nano-scale β-NiAl (B2), FCC-Cu, and carbides via ICME design;Stewart;Scr. Mater.,2021
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