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An irreversible cohesive zone model for interface fatigue crack growth simulation

机译:界面疲劳裂纹扩展模拟的不可逆粘性区模型

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摘要

Fatigue crack growth (FCG) along an interface is studied. Instead of using the Paris equation, the actual process of material separation during FCG is described by the use of an irreversible constitutive equation for the cyclic interface traction-separation behavior within the cohesive zone model (CZM) approach. In contrast to past development of CZMs, the traction-separation behavior does not follows a predefined path. The model definition, its predicted cyclic material separation behavior and application to a numerical study of interface FCG in double-cantilever beam, end-loaded split and mixed-mode beam specimens are reported.
机译:研究了沿界面的疲劳裂纹扩展(FCG)。代替使用Paris方程,通过在粘性区模型(CZM)方法中使用不可逆本构方程来描述循环界面牵引-分离行为,来描述FCG期间材料分离的实际过程。与CZM的过去发展相反,牵引分离行为没有遵循预定的路径。报道了该模型的定义,其预测的循环材料分离行为以及在双悬臂梁,端载荷分裂和混合模梁样品中界面FCG数值研究中的应用。

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