α1-Martensite morphology in shock-loaded type 304 stainless steel
Author:
Publisher
Elsevier BV
Subject
General Engineering
Reference16 articles.
1. Effect of peak pressure and pressure-pulse duration on crystallographic transformations in shock-loaded metals and alloys
2. Interactive effects of shock loading parameters on the substructure and mechanical properties of nickel and stainless steel
3. Shock Waves and High-Strain Rate Phenomena in Metals: Concepts and Applications;Murr,1981
4. Martensitic transformations induced by plastic deformation in the Fe-Ni-Cr-C system
5. A mechanism for the strain-induced nucleation of martensitic transformations
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1. Impact of Pre-formed Martensite on the Electromagnetic Properties and Martensitic Transformation Kinetics of Uniaxially Tensile Loaded 304 Stainless Steel;Journal of Materials Engineering and Performance;2020-10-29
2. Enhancement of Mechanical Properties of AISI304 Stainless Thin Plate by Low-pressure, Repeated Explosive Hardening;ISIJ International;2019-11-15
3. Evaluation of microstructural and mechanical properties of Fe-16Cr-1Ni-9Mn-0.12N austenitic stainless steel welded joints;Materials Characterization;2017-09
4. Enhancement of Microstructural and Mechanical Properties by Pulse Mode of Metal Transfer in Welded Modified Ferritic Stainless Steel;ISIJ International;2015
5. Influence of Heat Input on Martensite Formation and Impact Property of Ferritic-Austenitic Dissimilar Weld Metals;Journal of Materials Science & Technology;2012-04
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