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首页> 外文期刊>Archive of Applied Mechanics >Dynamic stress resulting from a plane compressional wave in two-particle reinforced composites
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Dynamic stress resulting from a plane compressional wave in two-particle reinforced composites

机译:两粒子增强复合材料中平面压缩波产生的动应力

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In this paper, based on the theory of elastodynamics, the multiple scattering of elastic waves and dynamic stress in multiparticle reinforced composites is investigated, and the analytical solution of this problem is obtained. By using the wave function expansion method, the expressions of total wave fields in each medium are presented. The addition theorem of spherical Bessel functions is employed to accomplish the translation for different local coordinate systems. According to the continuous boundary conditions around the particles, the expanded mode coefficients are determined. As an example, the variation of dynamic stress concentration factors at the interface between the particles and the matrix under different parameters is analyzed. It can be seen from the results that when the incident frequency is different, the effect of the distance between the centers of the particles on the dynamic stress varies greatly. Only when the distance is greater than a certain number can its effect be ignored. When the distance is fixed, the effect of material properties on dynamic stress is also examined.
机译:本文基于弹性动力学理论,研究了多颗粒增强复合材料中弹性波和动应力的多次散射,并获得了该问题的解析解。利用波函数展开法,给出了每种介质中总波场的表达式。球面贝塞尔函数的加法定理用于完成不同局部坐标系的平移。根据粒子周围的连续边界条件,确定扩展模系数。例如,分析了在不同参数下颗粒与基体之间的界面处的动态应力集中因子的变化。从结果可以看出,当入射频率不同时,粒子中心之间的距离对动应力的影响变化很大。只有当距离大于一定数时,其作用才被忽略。当距离固定时,还将检查材料特性对动应力的影响。

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