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Numerical Simulation on Fast Crack Propagation in a Bi-Material Involving Interfaces under Dynamic Loading

机译:动态载荷作用下双材料界面快速裂纹扩展的数值模拟

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The paper considers a bi-material with a crack propagating rapidly, penetrating or deflecting at the interface under dynamic loading. The hybrid time-domain boundary element method, together with the multi-region technique, is applied to simulate the dynamic process of propagation and penetration or deflection of the crack. Moving of the crack tip in the matrix, penetration and deflection of the crack at the interface, and propagation of the crack along the interface are controlled by criteria developed from the quasi-static ones. A bi-material rectangular plate with an edged crack under impact loading is computed and compared with the photoelastic experiments. Good agreement between numerical and experimental results implies that the present boundary element numerical method can provide an excellent simulation for the dynamic crack propagation in a bi-material involving interfaces.
机译:本文考虑了一种双材料,它在动态载荷作用下会迅速在界面处传播,穿透或偏转。混合时域边界元方法与多区域技术一起被用来模拟裂纹扩展,传播或变形的动态过程。裂纹尖端在基体中的移动,裂纹在界面处的渗透和偏转以及裂纹在界面处的传播均由准静态准则制定。计算了双材料矩形板在冲击载荷下的边缘裂纹,并将其与光弹性实验进行了比较。数值和实验结果之间的良好一致性意味着,本发明的边界元数值方法可以为涉及界面的双材料中的动态裂纹扩展提供出色的模拟。

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