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首页> 外文期刊>International Journal for Numerical Methods in Engineering >The extended finite element method with new crack-tip enrichment functions for an interface crack between two dissimilar piezoelectric materials
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The extended finite element method with new crack-tip enrichment functions for an interface crack between two dissimilar piezoelectric materials

机译:具有两种新的裂纹尖端扩展功能的扩展有限元方法,用于两种不同压电材料之间的界面裂纹

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摘要

This paper studies the static fracture problems of an interface crack in linear piezoelectric bimaterial by means of the extended finite element method (X-FEM) with new crack-tip enrichment functions. In the X-FEM, crack modeling is facilitated by adding a discontinuous function and crack-tip asymptotic functions to the classical finite element approximation within the framework of the partition of unity. In this work, the coupled effects of an elastic field and an electric field in piezoelectricity are considered. Corresponding to the two classes of singularities of the aforementioned interface crack problem, namely, E class and class, two classes of crack-tip enrichment functions are newly derived, and the former that exhibits oscillating feature at the crack tip is numerically investigated. Computation of the fracture parameter, i.e., the J-integral, using the domain form of the contour integral, is presented. Excellent accuracy of the proposed formulation is demonstrated on benchmark interface crack problems through comparisons with analytical solutions and numerical results obtained by the classical FEM. Moreover, it is shown that the geometrical enrichment combining the mesh with local refinement is substantially better in terms of accuracy and efficiency. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:本文利用具有新的裂纹尖端富集功能的扩展有限元方法(X-FEM),研究了线性压电双材料界面裂纹的静态断裂问题。在X-FEM中,通过在单位分区的框架内向经典有限元逼近添加不连续函数和裂纹尖端渐近函数来促进裂纹建模。在这项工作中,考虑了压电中的弹性场和电场的耦合效应。对应于上述界面裂纹问题的两类奇点,即E类和E类,新推导了两类裂纹尖端富集函数,并对前者在裂纹尖端表现出振动特征进行了数值研究。提出了使用轮廓积分的域形式来计算断裂参数,即J-积分。通过与解析解决方案进行比较以及经典FEM获得的数值结果,证明了所提出配方在基准界面裂纹问题上的出色准确性。此外,已经表明,在精度和效率方面,将网格与局部细化相结合的几何富集实质上更好。版权所有(c)2015 John Wiley&Sons,Ltd.

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