Presence ofε-martensite as an intermediate phase during the strain-induced transformation of SUS304 stainless steel
Author:
Publisher
Informa UK Limited
Subject
Condensed Matter Physics
Link
http://www.tandfonline.com/doi/pdf/10.1080/09500839.2016.1190876
Reference26 articles.
1. S. Hasegawa and K. Osozawa,Japan Stainless Steel Association: Stainless Steel Handbook, 3rd ed., The Nikkan Kogyo Shimbun, Tokyo, 1995, p. 554.
2. Martensitic transformations induced by plastic deformation in the Fe-Ni-Cr-C system
3. Martensite formation, strain rate sensitivity, and deformation behavior of type 304 stainless steel sheet
4. Temperature dependence of strain hardening and plastic instability behaviors in austenitic stainless steels
5. Effect of strain rate on the strain-induced γ → α′-martensite transformation and mechanical properties of austenitic stainless steels
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1. Plasticity-induced Hydrogen Desorptions Associated with Hydrogen-assisted Martensitic Transformation and Deformation Twinning in Austenitic Stainless Steels;ISIJ International;2024-01-30
2. Removal of SUS304 fine particles transformed into martensite by the high gradient magnetic separation under dry condition;Journal of Physics: Conference Series;2023-07-01
3. In Situ X-ray Diffraction Investigation of Hydrogen Effects on Deformation-Induced Phase Transformation in Forged and Additively Manufactured 304L Stainless Steels;JOM;2023-04-03
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5. Marked Degradation of Tensile Properties Induced by Plastic Deformation after Interactions between Strain-Induced Martensite Transformation and Hydrogen for Type 316L Stainless Steel;Metals;2020-07-10
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