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首页> 外文期刊>International Journal for Numerical Methods in Engineering >Adaptive finite element computation of dielectric and mechanical intensity factors in piezoelectrics with impermeable cracks
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Adaptive finite element computation of dielectric and mechanical intensity factors in piezoelectrics with impermeable cracks

机译:不可渗透裂纹压电材料的介电和机械强度因子的自适应有限元计算

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The paper deals with the application of an adaptive, hierarchic-iterative finite element technique to solve two-dimensional electromechanical boundary value problems with impermeable cracks in piezoelectric plates. In order to compute the dielectric and mechanical intensity factors, the interaction integral technique is used. The iterative finite element solver takes advantage of a sequence of solutions on hierarchic discretizations. Based on an a posteriori error estimation, the finite element mesh is locally refined or coarsened in each step. Two crack configurations are investigated in an infinite piezoelectric plate: A finite straight crack and a finite kinked crack. Fast convergence of the numerical intensity factors to the corresponding analytical solution is exemplarily proved during successive adaptive steps for the first configuration. Similar tendency can be observed for the second configuration. Furthermore, the computed intensity factors for the kinks are found to coincide well with the corresponding analytical values. In order to simulate the kinks spreading from a straight crack, the finite element mesh is modified automatically with a specially developed algorithm. This forms the basis for a fully adaptive simulation of crack propagation.
机译:本文讨论了一种自适应的,层次迭代的有限元技术在解决压电板中具有不可渗透裂缝的二维机电边界值问题中的应用。为了计算介电强度和机械强度因子,使用了相互作用积分技术。迭代有限元求解器利用了层次化离散化的一系列解决方案。基于后验误差估计,在每个步骤中对局部有限元网格进行局部优化或粗化。在无限压电板上研究了两种裂纹形态:有限的直裂纹和有限的扭结裂纹。在针对第一配置的连续自适应步骤期间,示例性地证明了数值强度因子快速收敛至相应的解析解。对于第二配置可以观察到类似的趋势。此外,发现为扭结计算的强度因子与相应的分析值很好地吻合。为了模拟从直裂纹扩展的扭结,使用专门开发的算法自动修改了有限元网格。这构成了裂纹扩展的完全自适应模拟的基础。

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