Microstructure and property of nitrogen-alloyed high manganese austenitic steel under high strain rate tension
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference18 articles.
1. Effect of microstructure evolution on fracture toughness in isothermally aged austenitic stainless steels for cryogenic applications
2. Mechanical Properties of 32Mn-7Cr-0.6Mo-0.3N Austenitic Steel for Cryogenic Applications
3. Cryogenic deformation microstructures of 32Mn–7Cr–1Mo–0.3N austenitic steels
4. Influence of welding parameters on nitrogen content in welding metal of 32Mn-7Cr-1Mo-0.3N austenitic steel
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1. Atomic-scale understanding of twin intersection rotation and ε-martensite transformation in a high Mn twinning-induced plasticity steel;Acta Materialia;2024-06
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3. Twinning activities in high-Mn austenitic steels under high-velocity compressive loading;Materials Science and Engineering: A;2015-11
4. Effects of strain rates on deformation twinning behavior in α-titanium;Materials Characterization;2015-08
5. Hot ductility behavior of Incoloy901 superalloy in the cast and wrought conditions;International Journal of Materials Research;2014-04-12
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