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Anti-plane shear crack in a functionally gradient piezoelectric layer bonded to dissimilar half spaces

机译:粘结到不同半空间的功能梯度压电层中的反平面剪切裂纹

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摘要

In this paper, the problem of a crack located in a functionally gradient piezoelectric interlayer between two dissimilar homogeneous piezoelectric half-planes being subjected to an anti-plane mechanical loading and an in-plane electric loading is considered. The material properties of the interlayer, such as the elastic stiffness, piezoelectric constant and dielectric constant, are assumed to vary continuously along the thickness of the interlayer, and the crack surface condition is assumed to be impermeable or permeable. By using the Fourier transform, the problem is first reduced to two pairs of dual integral equations and then into a Fredholm integral equation of the second kind. Numerical calculations are carried out, and the effects of crack geometric parameters on the stress intensity factor and the energy release rate are shown graphically.
机译:在本文中,考虑了位于两个不同的均质压电半平面之间的功能梯度压电中间层中的裂纹问题,该裂纹经受了反平面机械载荷和平面内电载荷。假定夹层的材料性质,例如弹性刚度,压电常数和介电常数沿着夹层的厚度连续变化,并且假定裂纹表面条件是不可渗透的或可渗透的。通过使用傅立叶变换,首先将问题简化为两对对偶积分方程,然后将其简化为第二类Fredholm积分方程。进行了数值计算,并以图形方式显示了裂纹几何参数对应力强度因子和能量释放速率的影响。

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