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Effects of substrate compliance on circular buckle delamination of thin films

机译:基材柔度对薄膜圆扣分层的影响

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The present work analyzes circular delamination buckling in a film/substrate system based on the Von Karman nonlinear plate theory with the consideration of elastic deformation of the substrate. Due to the axisymmetry of circular buckling, the substrate deformation is modeled by coupled springs and the spring compliances are determined from the dimension analysis and finite element calculations. The numerical shooting method is used to solve the nonlinear post-buckling problem. The stress intensity factors, the energy release rate, and the phase angle are given here for a variety of the elastic mismatch between the film and the substrate. The results show that in some cases, the energy release rate can be several times larger than that derived from the widely used clamped edge condition.
机译:本工作基于冯·卡曼非线性板理论,在考虑了基底弹性变形的基础上,分析了膜/基底系统中的圆形分层屈曲。由于圆形屈曲的轴对称性,基板变形是通过耦合弹簧建模的,并且弹簧的柔度是通过尺寸分析和有限元计算确定的。数值射击方法用于解决非线性后屈曲问题。此处给出了应力强度因子,能量释放速率和相角,用于薄膜和基材之间的各种弹性失配。结果表明,在某些情况下,能量释放速率可能比从广泛使用的夹紧边缘条件得出的能量释放速率大几倍。

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