首页> 外文期刊>Journal of thermal stresses >TRANSIENT INTENSITY FACTORS FOR A PARALLEL CRACK IN A PLATE OF A FUNCTIONALLY GRADED PIEZOELECTRIC MATERIAL UNDER THERMAL SHOCK LOADING CONDITIONS
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TRANSIENT INTENSITY FACTORS FOR A PARALLEL CRACK IN A PLATE OF A FUNCTIONALLY GRADED PIEZOELECTRIC MATERIAL UNDER THERMAL SHOCK LOADING CONDITIONS

机译:热冲击载荷条件下功能梯度压电材料板中平行裂纹的瞬态强度因子

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摘要

A crack in a plate of a functionally graded piezoelectric material is studied under thermal shock loading conditions. The crack faces are supposed to be completely insulated. All material properties are assumed to be exponentially dependent on the distance from the crack line parallel to the boundaries of the plate. By using both the Laplace transform and Fourier transform, the thermal and electromechanical problems are reduced to a singular integral equation and a system of singular integral equations that are solved numerically. The stress and electric displacement intensity factors vs. time for various material constants and geometric parameters are calculated.
机译:研究了在热冲击载荷条件下功能梯度压电材料板的裂纹。裂纹面应完全绝缘。假定所有材料特性都取决于与平行于板边界的裂纹线的距离。通过同时使用拉普拉斯变换和傅立叶变换,将热和机电问题简化为一个奇异积分方程和一个数值求解的奇异积分方程组。计算了各种材料常数和几何参数的应力和电位移强度因子随时间的变化。

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