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Interfacial debonding of a circular inhomogeneity in piezoelectric-piezomagnetic composites under anti-plane mechanical and in-plane electromagnetic loading

机译:反平面机械和平面电磁载荷下压电-压电复合材料中圆形不均匀性的界面剥离

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摘要

This paper studies the problem of a partially debonded piezomagnetic circular inhomogeneity in an infinite piezoelectric matrix, or vice versa. The debonded parts are modeled by a set of circular-arc interfacial cracks. Crack surfaces are assumed to be electrically open and magnetically closed. The matrix is subjected to remote anti-plane mechanical and in-plane electromagnetic loadings. A general solution to the problem studied is obtained by employing the analytical continuation theory. Detailed analysis is made for a single circular-arc interfacial crack. The closed-form expressions of the complex potentials are obtained in both the inhomogeneity and the matrix. The intensity factors of stress, electric displacement and magnetic induction are also provided explicitly. For the case of piezoelectric matrix and piezomagnetic inclusion, the influence of crack geometry and the magnitudes of mechanical and electromagnetic loadings on the intensity factors are discussed in detail. In the case where anti-plane strain, in-plane electric and magnetic fields are applied simultaneously, the intensity factors only depend on the effective magneto-electro-elastic material constants, and whether the matrix is piezoelectric or piezomagnetic does not affect these intensity factors.
机译:本文研究了无限压电矩阵中部分键合的压电圆形不均匀性的问题,反之亦然。脱粘的零件是通过一组圆弧界面裂缝建模的。假定裂纹表面是电开放的,并且是磁性封闭的。矩阵承受远距离的反平面机械和平面电磁负载。通过使用分析连续性理论可以获得研究问题的一般解决方案。对单个圆弧界面裂纹进行了详细分析。在非均质性和基质中均获得了复合势的闭式表达式。还明确提供了应力,电位移和磁感应强度因子。对于压电矩阵和压电夹杂物,详细讨论了裂纹几何形状以及机械和电磁载荷的大小对强度因子的影响。在同时施加反面应变,面内电场和磁场的情况下,强度因子仅取决于有效的磁电弹性材料常数,并且基体是压电的还是压电的不影响这些强度因子。

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