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Direct experimental mapping of microscale deformation heterogeneity in duplex stainless steel

机译:双相不锈钢微观形变异质性的直接实验图

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摘要

In situ tensile test has been performed with the electron back-scattering diffraction (EBSD) technique for characterizing the deformation heterogeneity at microscopic level of a duplex stainless steel consisting of austenite and ferrite. It was observed that, as deformation proceeded, the fraction of low-angle boundaries continuously increased and strain gradient developed at some grain boundaries and twin boundaries, as well as in the interior of some grains. The in situ experiments quantitatively captured the change of grain-orientation-dependent plastic behavior in respective phases and the strain partition between duplex phases as a function of applied strain. Using a visco-plastic self-consistent (VPSC) model incorporating the accommodation of micromechanical properties of grains with different orientations in two phases, the evolution of microstresses/microstrains at various length scales was simulated and discussed in detailed within the material undergoing plastic deformation. The experimental observations are well explained by the VPSC model. The present investigations provide the in-depth understanding of anisotropic micromechanical behaviors of the duplex steel.
机译:用电子反向散射衍射(EBSD)技术进行了原位拉伸试验,以表征由奥氏体和铁素体组成的双相不锈钢在微观水平的形变不均匀性。观察到,随着变形的进行,低角度边界的比例不断增加,并且在某些晶界和孪晶界以及某些晶粒内部出现了应变梯度。原位实验定量地捕获了各个相中晶粒取向相关塑性行为的变化以及双相之间的应变分配,作为施加应变的函数。使用粘塑性自洽(VPSC)模型并结合了具有不同取向的晶粒在两相中的晶粒的微机械性能,在各种长度尺度上模拟并详细讨论了经历塑性变形的材料中微应力/微应变的演变。 VPSC模型很好地解释了实验观察结果。本研究提供了对双相钢各向异性微观力学行为的深入理解。

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