Deformation induced martensitic transformation in 304 austenitic stainless steel: In-situ vs. ex-situ transmission electron microscopy characterization
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[1] Arpan Das,et al. Morphologies and characteristics of deformation induced martensite during low cycle fatigue behaviour of austenitic stainless steel , 2011 .
[2] M. Wróbel,et al. Reverse transformation of deformation-induced martensite in austenitic stainless steel studied by positron annihilation , 2014, Journal of Materials Science.
[3] Xin Sun,et al. Twinning and martensite in a 304 austenitic stainless steel , 2012 .
[4] D. Matlock,et al. Deformation-induced phase transformation and strain hardening in type 304 austenitic stainless steel , 2006 .
[5] Y. Morii,et al. Tensile behavior of TRIP-aided multi-phase steels studied by in situ neutron diffraction , 2004 .
[6] Mingxing Zhang,et al. Crystallography of the Simple HCP/FCC System , 2008 .
[7] F. B. Pickering,et al. Physical metallurgy and the design of steels , 1978 .
[8] P. Hedström. Deformation induced martensitic transformation of metastable stainless steel AISI 301 , 2005 .
[9] Arpan Das,et al. Experimental investigation on martensitic transformation and fracture morphologies of austenitic stainless steel , 2009 .
[10] P. Liaw,et al. In situ X-ray microdiffraction study of deformation-induced phase transformation in 304 austenitic stainless steel , 2014 .
[11] T. Tadaki,et al. In-situ TEM observation of γ→ε martensitic transformation during tensile straining in an Fe-Mn-Si shape memory alloy , 1997 .