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Characteristics and correlations of nonaffine particle displacements in the plastic deformation of athermal amorphous materials

无定形固体 准静态过程 仿射变换 可塑性 指数函数 幂律 剪切(地质) 切断 剪切带 材料科学 机械 变形(气象学) 流离失所(心理学) 物理 凝聚态物理 指数衰减 经典力学 数学 几何学 数学分析 复合材料 热力学 化学 结晶学 量子力学 心理学 统计 心理治疗师
作者
L Meenakshi,Barun K. Sen Gupta
出处
期刊:Soft Matter [Royal Society of Chemistry]
卷期号:18 (45): 8626-8632 被引量:3
标识
DOI:10.1039/d2sm00702a
摘要

When an amorphous solid is deformed homogeneously, it exhibits heterogeneous plastic instabilities with a localized cooperative rearrangement of a cluster of particles in response. The heterogeneous behavior plays an important role in deciding the mechanical properties of amorphous solids. In this paper, we employ computer simulations to study the characteristics and the spatial correlations of these clusters characterized by their non-affine displacements in amorphous solids under simple shear deformation in the athermal quasistatic limit. The clusters with large displacements are found to be homogeneously distributed in space in the elastic regime, followed by a localization within a system-spanning shear band after yielding. The distributions of the displacement field exhibit a power-law nature in the elastic regime with an exponential cutoff post yielding. The non-affine displacements show strong spatial correlations, which become long-ranged with increasing strain. From our results, it is evident that the decay of the correlation functions is exponential in nature in the elastic regime. The yielding transition is marked by an abrupt change in the decay after which it is well described by a power-law with an exponential cutoff. These results demonstrate a scale-free character of non-affine correlations in the steady flow regime. These results are found to be robust and independent of the strain window over which the total non-affine displacement is calculated.
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