Fatigue-induced martensitic transformation in metastable stainless steels
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Publisher
Elsevier
Reference8 articles.
1. Stress-Assisted and strain-induced martensites in FE-NI-C alloys
2. Martensitic transformations induced by plastic deformation in the Fe-Ni-Cr-C system
3. Influence of martensite formation and grain size on room temperature low cycle fatigue behaviour of AISI 304LN austenitic stainless steel
4. Plasticity-induced martensitic transformation during cyclic deformation of AISI 304L stainless steel
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1. Strain-induced martensite formation in metastable austenitic steels with varying carbon content;INT J MATER RES;2022
2. Effect of metallurgical variables on the austenite stability in fatigued AISI 304 type steels;Engineering Fracture Mechanics;2017-11
3. Depth-sensing indentation-based studies of surface mechanical behavior and fatigue damage evolution of an austenitic stainless steel subjected to cyclic straining;Materials Science and Engineering: A;2016-01
4. Influence of Prior Fatigue Damage on Tensile Properties of 316L(N) Stainless Steel and Modified 9Cr-1Mo Steel;Metallurgical and Materials Transactions A;2014-12-02
5. Effects of low-cycle fatigue on static mechanical properties, microstructures and fracture behavior of 304 stainless steel;Materials Science and Engineering: A;2010-06
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