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Dynamic Anti-Plane Behaviors of a Semi-Infinite Piezoelectric Medium with a Circular Cavity and a Crack near the Surface

机译:半无限压电介质的动态反平面行为,该介质具有圆形空腔并在表面附近具有裂纹

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Dynamic interaction is investigated theoretically between a circular cavity and a crack near the surface in a semi-infinite piezoelectric medium subjected to time-harmonic incident anti-plane shearing in this paper. The formulations are based on the method of complex variable and Green's function. Dynamic stress concentration factors at the edge of the circular cavity and dynamic stress intensity factors at the crack tip are obtained by solving boundary value problems with the method of orthogonal function expansion. The calculating results are plotted to show how the frequencies and the orientation of incident wave, piezoelectric characteristic parameters of the material and the structural geometries influence upon the dynamic stress concentration factor (DSCF) and dynamic stress intensity factor (DSIF).
机译:在理论上研究了时空入射反平面剪切作用下半无限压电介质中圆形空腔与表面附近裂纹之间的动力相互作用。这些公式基于复变量和格林函数的方法。通过利用正交函数展开法求解边值问题,可以得到圆腔边缘的动应力集中因子和裂纹尖端的动应力强度因子。绘制计算结果以显示入射波的频率和方向,材料的压电特性参数以及结构几何形状如何影响动态应力集中系数(DSCF)和动态应力强度系数(DSIF)。

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