晶粒结合部附近旋转-剪切细观缺陷产生的局部弹性应力场分析

S. Kirikov, A. Pupynin, Yu. V. Svirina
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引用次数: 2

摘要

本文研究了含应变致旋转剪切细观缺陷的晶界结合部的弹性应力场结构。晶粒在穿过晶界时塑性变形的跳跃会在晶粒上产生额外的取向错配,取向错配在晶粒的连接处会导致旋转型的线性介观缺陷的出现-结位错。剪切型的平面细观缺陷出现在边界的平截面上,这些细观缺陷是沿边界均匀分布的塑性剪切。这些介观缺陷在晶粒交界处和边缘附近产生空间上不均匀的弹性应力场。它们在塑性变形过程中增加,在足够大的应变值下,开始形成破碎的材料结构。旋转剪切细观缺陷也是多晶固体黏性断裂阶段微裂纹成核和积累的原因。本文给出了分析旋转-剪切细观缺陷晶界附近应力场分布和各向异性的渐近公式。结果表明,应力场的分量对晶界长度的依赖性较弱(对数)。结果表明,偶极子的筛选偏斜导致结点附近弹性应力张量的对角线分量出现角依赖性,其对偏斜偶极子弹性场的贡献约为10-15%。所得到的渐近表达式可用于研究位错系动力学和分析在节理和晶界附近微裂纹形核的条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ANALYSIS OF LOCAL FIELDS OF ELASTIC STRESS GENERATED BY ROTATIONAL-SHEAR MESODEFECTS NEAR THE JUNCTIONS OF GRAINS
The work is devoted to the study of the structure of the elastic stress field in the area of junctions of grain boundaries containing strain-induced rotational-shear mesodefects. The jumps in plastic distortion of grains when passing through grain boundaries create additional misorientations on them, the mismatch of which at the junctions of grains leads to the appearance of linear mesodefects of the rotational type – junction disclinations. Planar mesodefects of the shear type appear on the flat sections of the boundaries, which are plastic shears uniformly distributed along the boundaries. These mesodefects create spatially inhomogeneous elastic stress fields near the junctions and ledges of the grains. They increase during plastic deformation and, at sufficiently large value of strain, initiate the formation of a fragmented material structure. Rotational-shear mesodefects are also the cause of the nucleation and accumulation of microcracks at the stage of viscous fracture of polycrystalline solids. In this work, asymptotic formulas are obtained that make it possible to analyze the distribution and anisotropy of the internal stress field in the vicinity of the grain junction from rotational-shear mesodefects. It was found that the components of the stress field weakly depend (logarithmically) on the length of the grain boundaries formatting junction of the grains. It is shown that the screening disclination of the dipole leads to the appearance of an angular dependence of the diagonal components of the elastic stress tensor in the vicinity of the junctions and its contribution to the elastic field of the disclinations dipole is about 10–15%. The obtained asymptotic expressions can be used to study the kinetics of a dislocation ensemble and to analyze the conditions for the nucleation of microcracks in the vicinity of joints and ledges of grains.
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