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Microstructure evolution and phase transformation in a novel high- alloyed TRIP steel observed during in-situ tensile and cyclic deformation

机译:新型高合金TRIP钢的原位拉伸和循环变形过程中的显微组织演变和相变

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The tensile and cyclic deformation behaviour of a new metastable austenitic stainless cast steel were studied in-situ in a scanning electron microscope (SEM). The metastable steel was investigated in cast condition. The in-situ tests in the SEM show the evolution of the microstructure in dependence on the deformation degree for uniaxial deformation and the number of cycles during fatigue, respectively. The development of the microstructure (i.e. deformation bands) are correlated with the places, where the phase transformation of the metastable austenite into the hep structure or the bec a'- martensite (TRIP - effect; TRansformation Induced Plasticity) takes place by applying different SEM-techniques as electron backscatter diffraction (EBSD). In addition, calculations of local deformation fields developing during tensile and cyclic deformation using digital image correlation (DIC) are presented.
机译:在扫描电子显微镜(SEM)中对新型亚稳态奥氏体不锈钢铸钢的拉伸和循环变形行为进行了研究。在铸造条件下研究了亚稳钢。 SEM中的原位测试表明,微观结构的演变分别取决于单轴变形的变形程度和疲劳期间的循环次数。微观结构(即变形带)的发展与通过使用不同的SEM发生亚稳奥氏体相转变为hep结构或bec a'-马氏体的相变(TRIP-效应;相变诱导可塑性)有关。电子背散射衍射(EBSD)技术。此外,提出了使用数字图像相关性(DIC)进行拉伸和循环变形过程中产生的局部变形场的计算。

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