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A novel boundary-domain element method of initial stress, finite deformation and discrete cracks in multilayered anisotropic elastic solids

机译:各向异性各向异性弹性固体中初始应力,有限变形和离散裂纹的边界域单元法

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摘要

We introduce a novel boundary-domain element method of initial stress, finite deformation (due to large rotation) and discrete cracks in multilayered anisotropic elastic solids. Because the special Green’s function that satisfies the interfacial continuity and surface boundary conditions is employed, the numerical discretization is reduced to be along one side of the cracks and over the subdomains of finite deformation. Two examples are presented. First, the process of interfacial delamination is simulated around a growing through-thickness crack in a pre-stretched film bonded to a flexible substrate. It is shown that the progression of delamination damage is stable but the initiation of delamination crack can be a snap-back instability. This simultaneous damage and fracture process is approached by the cohesive zone model. Second, the postbuckling of a circular delaminated and pre-compressed film is simulated on a flexible substrate. It is shown that the compliance of substrate can play a significant role on the critical behavior of buckling. If the substrate is more compliant or stiffer than the film, the instability initiates as a subcritical hard or a supercritical soft bifurcation. The critical magnitude of pre-strain for the initiation of buckling increases with substrate stiffness. Also, the transition of buckling from the first to the second mode is captured in the simulation.
机译:我们介绍了一种新颖的边界域单元法,该方法包括多层各向异性弹性固体中的初始应力,有限变形(由于大旋转)和离散裂纹。因为采用了满足界面连续性和表面边界条件的特殊格林函数,所以数值离散化被简化为沿着裂纹的一侧以及在有限变形的子域上。给出两个例子。首先,围绕粘合到柔性基板上的预拉伸膜中不断增长的贯穿厚度裂纹,模拟了界面分层的过程。结果表明,分层破坏的进程是稳定的,但分层裂纹的产生可能是回弹不稳定性。内聚力区模型可以同时实现破坏和断裂过程。其次,在柔性基板上模拟圆形分层和预压缩膜的后屈曲。结果表明,基底的柔度可以对屈曲的关键行为起重要作用。如果基材比薄膜更柔顺或更坚硬,则不稳定性会因亚临界硬分叉或超临界软分叉而开始。屈曲开始的预应变的临界量随基底刚度而增加。同样,在模拟中捕获了从第一模式到第二模式的屈曲过渡。

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