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Crack tip field in piezoelectric/piezomagnetic media

机译:压电/压电介质中的裂纹尖端场

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This paper considers the magnetoelectroelastic problem of a crack in a medium possessing coupled piezoelectric, piezo-magnetic and magnetoelectric effects. Based on the extended Stroh formalism, the general two-dimensional solutions to the magnetoelectroelastic problem are obtained, involving five analytic functions of different variables. The magnetoelectroelastic field around the crack tip is given. It contains five modes of square root singularities. Expressions of the stresses, electric displacements and magnetic inductions in the vicinity of the crack tip are derived and the field intensity factors are provided. The path-independent conservative integral is derived. The energy release rate is written in terms of those field intensity factors. The explicit algebraic results are given for a special case of an anti-plane crack in a magnetoelectroelastic medium.
机译:本文考虑了具有压电,压电和磁电耦合效应的介质中裂纹的磁电弹性问题。在扩展的Stroh形式主义的基础上,获得了磁电弹性问题的一般二维解,涉及五个不同变量的解析函数。给出了裂纹尖端周围的磁电弹性场。它包含五种平方根奇点模式。推导了裂纹尖端附近的应力,电位移和磁感应的表达式,并提供了场强因子。导出与路径无关的保守积分。能量释放率用那些场强因子来表示。对于磁电弹性介质中反平面裂纹的特殊情况,给出了明确的代数结果。

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