Grain boundary inclination dependence of GN dislocation patterns and density in bicrystal model

Yoshiki Kawano, N. Tamaru, S. Ishii, T. Mayama, Ryouji Kondou, T. Ohashi
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引用次数: 4

Abstract

Deformation behaviors of polycrystalline metals are quite complex, and we are not easy to directly investigate them; thus, analyses employing simple models such as bicrystals are required. In this study, we conducted crystal plasticity analysis of unidirectional tensile tests, using compatible-symmetric-type bicrystal models with the not-inclined grain boundary and incompatible-type bicrystal model with the inclined grain boundary; we investigated changes in patterns of geometrically necessary dislocation (GND) bans and the density of GNDs in the initial deformation. In the condition where the grain boundary contacted with the constrained faces, GND bans were formed and the distribution was changed with changing the inclination angle α of the grain boundary. In contrast, GNDs were not localized in high density in the condition where the grain boundary contacted with the free surfaces; the changes were caused by two-reasons: one was changes of compatibility of the bicrystal model with changing the inclination angle α, and the other was that deformation shapes of the bicrystal model under tensile loading were changed with changing the inclination angle α and the deformation was constrained by the constrained faces. The compatibility of and average density of GNDs in the bicrystal model could be estimated using differences of components of Schmid tensors between the crystal grains.
双晶模型中GN位错模式和密度对晶界倾角的依赖
多晶金属的变形行为非常复杂,不容易直接研究;因此,需要采用双晶体等简单模型进行分析。本研究采用非倾斜晶界的相容对称型双晶模型和倾斜晶界的不相容型双晶模型对单向拉伸试验进行了晶体塑性分析;我们研究了初始变形中几何必要位错(GND)带的模式和GND密度的变化。在晶界与约束面接触的情况下,随着晶界倾角α的改变,会形成GND条纹,并改变其分布。而在晶界与自由表面接触的情况下,GNDs密度不高;这种变化是由于两种原因引起的:一是改变双晶模型的相容性随倾角α的变化而变化;二是改变倾角α使双晶模型在拉伸载荷作用下的变形形态发生变化,变形受到约束面的约束。双晶模型中GNDs的相容性和平均密度可以通过晶粒间施密德张量分量的差异来估计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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