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Three-dimensional finite element analysis of fracture modes for the pull-off test of a thin film from a stiff substrate

机译:用于从刚性基板上拉下薄膜的断裂模式的三维有限元分析

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摘要

A three-dimensional geometrically nonlinear finite element analysis model is presented to study the interfacial delamination for the pull-off test of a thin film strip debonded from a stiff substrate. The strain energy release rates of all three modes (mode I, mode II, and mode III) along the debond front are considered and calculated to investigate the mixed fracture modes for the entire deformation regime from bending plate to stretching membrane. These results indicate that the individual strain energy release rates and the total energy release rate vary along the width of the debond front and strong three-dimensional edge effects exist near the free edges of the film. Interestingly, residual stress also plays an important role in controlling mixed fracture modes and the variation of the energy release rates. Finally, the three-dimensional finite element model is compared with an analytical solution developed earlier. The three-dimensional finite element model is found to provide additional insights for interfacial delamination for the pull-off test.
机译:提出了三维几何非线性有限元分析模型,以研究从硬质基材剥离的薄膜条的剥离试验的界面分层。考虑并计算了沿脱粘锋面的所有三种模式(模式I,模式II和模式III)的应变能释放率,以研究从弯曲板到拉伸膜整个变形过程的混合断裂模式。这些结果表明,各个应变能的释放速率和总的能量释放速率沿脱胶锋面的宽度变化,并且在薄膜的自由边缘附近存在强烈的三维边缘效应。有趣的是,残余应力在控制混合断裂模式和能量释放速率的变化中也起着重要作用。最后,将三维有限元模型与之前开发的解析解决方案进行了比较。发现三维有限元模型可为拉脱测试提供更多的界面分层见解。

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