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Multiple scattering of shear waves and dynamic stress from a circular cavity buried in a semi-infinite slab of functionally graded materials

机译:来自功能梯度材料的半无限平板中埋入的圆形空腔的剪切波和动应力的多次散射

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摘要

Based on the theory of elastodynamics and employing image method, the multiple scattering and dynamic stress in a semi-infinite slab of functionally graded materials with a circular cavity are investigated. The analytical solution of this problem is derived, and the numerical solutions of the dynamic stress concentration factor around the cavity are also presented. The effects of the distance between the cavity and the boundaries of the semi-infinite slab, the incident wave number and the non-homogeneity parameter of materials on the dynamic stress concentration factors are analyzed. Analyses show that the dynamic stress around the cavity increases with increasing non-homogeneity parameter of materials and incident wave number. The boundaries of the semi-infinite slab have great effect on both the maximum dynamic stress and the distribution of dynamic stress around the circular cavity, and the effect increases with increasing incident wave number.
机译:基于弹性动力学理论,并采用图像方法,研究了半无限功能梯度材料圆形空腔平板中的多重散射和动应力。推导了该问题的解析解,并给出了腔周围动应力集中系数的数值解。分析了空腔与半无限平板边界之间的距离,材料的入射波数和非均匀性参数对动应力集中因子的影响。分析表明,腔体周围的动应力随着材料的非均匀性参数和入射波数的增加而增加。半无限平板的边界对最大动应力和圆形腔周围动应力的分布都具有很大的影响,并且随着入射波数的增加而增大。

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