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Anisotropic and piezoelectric materials fracture analysis by BEM

机译:利用BEM分析各向异性和压电材料的断裂

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A mixed boundary element approach for two-dimensional anisotropic and piezoelectric fracture mechanics problems is presented in this paper. The numerical approach is based on displacement and traction integral equations for external and crack boundaries, respectively. Integrals with strongly singular and hypersingular kernels are analytically transformed into weakly singular and regular integrals prior to any numerical evaluation. This is achieved by the simple election of an integration variable consistent with the material characteristic parameters. The generality of the method allows for the use of curved and quarter-point elements and the evaluation of stress and electric displacement intensity factors from nodal values next to the crack tip. Several crack problems in anisotropic and piezoelectric materials are solved. The obtained results are in good agreement with previous solutions for cases where these solutions exist. The present BE approach is more general and simple than previous procedures and has allowed for solution of a variety of crack problems including curved cracks in piezoelectric materials which had never been studied before.
机译:提出了二维各向异性和压电断裂力学问题的混合边界元方法。数值方法分别基于外部和裂纹边界的位移和牵引积分方程。在进行任何数值评估之前,将具有强奇异和超奇异核的积分解析地转换为弱奇异和正则积分。这是通过简单选择与材料特征参数一致的积分变量来实现的。该方法的通用性允许使用弯曲和四分之一点的元素,并根据裂纹尖端附近的节点值评估应力和电位移强度因子。解决了各向异性和压电材料中的几个裂纹问题。对于存在这些解决方案的情况,所获得的结果与先前的解决方案非常吻合。当前的BE方法比以前的方法更通用,更简单,并且已经解决了许多裂纹问题,包括压电材料中从未有过的弯曲裂纹。

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