On crack path selection and the interface fracture energy in bimaterial systems

A.G. Evans , B.J. Dalgleish , M. He , J.W. Hutchinson
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引用次数: 127

Abstract

The intent of this article is to apply recent solutions for the mechanics of cracks at and near bimaterial interfaces to rationalize crack trajectories observed by experiment and to provide a basis for interpreting measurements of the interface fracture energy, Γi. It is demonstrated that the choice of test specimen governs the tendency of cracks to either remain at interfaces or deviate away, based on considerations of the phase angle of loading, ψ. It is further revealed that the measured interface fracture energy may be strongly influenced by the crack trajectory, as governed by ψ, through crack shielding and plasticity effects. Consequently, interfaces do not typically have unique fracture energies, but instead Γi depends on ψ which, in turn, is influenced by the test method.

双材料体系中裂纹路径选择与界面断裂能
本文的目的是应用双材料界面处和附近裂纹力学的最新解决方案,以使实验观察到的裂纹轨迹合理化,并为解释界面断裂能的测量提供基础,Γi。这证明了试样的选择决定了裂纹的倾向,要么留在界面上,要么偏离,基于加载的相位角,ψ。结果表明,裂纹轨迹通过裂纹屏蔽效应和塑性效应对界面断裂能产生强烈的影响,并受ψ的支配。因此,界面通常不具有唯一的断裂能,而是Γi取决于ψ,而ψ又受测试方法的影响。
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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