Quasicontinuum simulation of fracture at the atomic scale

材料科学 原子单位 晶界 断裂力学 偏转(物理) 劈理(地质) 断裂(地质) 位错 机械 复合材料 经典力学 物理 微观结构 量子力学
作者
Ronald E. Miller,Ellad B. Tadmor,Rob Phillips,M. Ortíz
出处
期刊:Modelling and Simulation in Materials Science and Engineering [IOP Publishing]
卷期号:6 (5): 607-638 被引量:220
标识
DOI:10.1088/0965-0393/6/5/008
摘要

We study the problem of atomic scale fracture using the recently developed quasicontinuum method in which there is a systematic thinning of the atomic-level degrees of freedom in regions where they are not needed. Fracture is considered in two distinct settings. First, a study is made of cracks in single crystals, and second, we consider a crack advancing towards a grain boundary (GB) in its path. In the investigation of single crystal fracture, we evaluate the competition between simple cleavage and crack-tip dislocation emission. In addition, we examine the ability of analytic models to correctly predict fracture behaviour, and find that the existing analytical treatments are too restrictive in their treatment of nonlinearity near the crack tip. In the study of GB-crack interactions, we have found a number of interesting deformation mechanisms which attend the advance of the crack. These include the migration of the GB, the emission of dislocations from the GB, and deflection of the crack front along the GB itself. In each case, these mechanisms are rationalized on the basis of continuum mechanics arguments.

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