准静态过程
缩放比例
准静态载荷
应变率
脆性
物理
分形
幂律
机械
材料科学
统计物理学
数学分析
热力学
数学
统计
几何学
作者
Joel Clemmer,Mark O. Robbins
标识
DOI:10.1103/physrevlett.129.078002
摘要
Using two-dimensional simulations of sheared, brittle solids, we characterize the resulting fragmentation and explore its underlying critical nature. Under quasistatic loading, a power-law distribution of fragment masses emerges after fracture which grows with increasing strain. With increasing strain rate, the maximum size of a grain decreases and a shallower distribution is produced. We propose a scaling theory for distributions based on a fractal scaling of the largest mass with system size in the quasistatic limit or with a correlation length that diverges as a power of rate in the finite-rate limit. Critical exponents are measured using finite-size scaling techniques.
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