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首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >Dynamic Stress of a Circular Cavity Buried in a Semi-Infinite Functionally Graded Material Subjected to Shear Waves
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Dynamic Stress of a Circular Cavity Buried in a Semi-Infinite Functionally Graded Material Subjected to Shear Waves

机译:受剪切波作用的半无限功能梯度材料中埋入的圆形空腔的动态应力

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摘要

The multiple scattering of shear waves and dynamic stress in a semi-infinite functionally graded material with a circular cavity is investigated, and the analytical solution of this problem is derived. The analytical solutions of wave fields are expressed by employing the wave function expansion method, and the expanded mode coefficients are determined by satisfying the boundary condition of the cavity. The image method is used to satisfy the traction-free boundary condition of the material structure. As an example, the numerical solution of the dynamic stress concentration factors around the cavity is also presented. The effects of the buried depth of the cavity, the incident wave number, and the nonhomogeneity parameter of materials on the dynamic stress concentration factors are analyzed. Analyses show that when the nonhomogeneity parameter of materials is <0, it has less influence on the maximum dynamic stress around the cavity; however, it has greater influence on the distribution of dynamic stress around the cavity. When the nonhomogeneity parameter of materials is <0, it has greater influence on both the maximum dynamic stress and the distribution of dynamic stress around the cavity, especially in the case that the buried depth is comparatively small.
机译:研究具有圆形空腔的半无限功能梯度材料中剪切波和动应力的多重散射,并得出该问题的解析解。利用波函数展开法表示波场的解析解,并通过满足腔的边界条件来确定展开模式系数。图像方法用于满足材料结构的无牵引边界条件。例如,还提出了腔周围动应力集中系数的数值解。分析了空腔的埋深,入射波数和材料的非均匀性参数对动应力集中系数的影响。分析表明,当材料的非均匀性参数<0时,它对型腔周围最大动应力的影响较小;但是,它对腔周围动应力的分布影响更大。当材料的非均质性参数<0时,它对最大动应力和空腔周围动应力的分布都具有更大的影响,尤其是在埋入深度较小的情况下。

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