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Propagation of longitudinal elastic waves in composites with a random set of spherical inclusions (effective field approach)

机译:纵向弹性波在带有一组随机球形夹杂物的复合材料中的传播(有效场法)

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摘要

The work is devoted to the problem of plane monochromatic longitudinal wave propagation through a homogeneous elastic medium with a random set of spherical inclusions. The effective field method and quasi-crystalline approximation are used for the calculation of the phase velocity and attenuation factor of the mean (coherent) wave field in the composite. The hypotheses of the method reduce the diffraction problem for many inclusions to a diffraction problem for one inclusion and, finally, allow for the derivation of the dispersion equation for the wave vector of the mean wave field in the composite. This dispersion equation serves for all frequencies of the incident field, properties and volume concentrations of inclusions. The long and short wave asymptotics of the solution of the dispersion equation are found in closed analytical forms. Numerical solutions of this equation are constructed in a wide region of frequencies of the incident field that covers long, middle, and short wave regions of propagating waves. The phase velocities and attenuation factors of the mean wave field are calculated for various elastic properties, density, and volume concentrations of the inclusions. Comparisons of the predictions of the method with some experimental data are presented; possible errors of the method are indicated and discussed.
机译:这项工作致力于平面单色纵波通过均匀弹性介质传播的问题,该介质具有一组随机的球形夹杂物。有效场法和准晶体近似法用于计算复合材料中平均(相干)波场的相速度和衰减因子。该方法的假设将许多夹杂物的衍射问题简化为一个夹杂物的衍射问题,并最终允许推导复合物中平均波场的波矢量的色散方程。该色散方程适用于入射场的所有频率,夹杂物的性质和体积浓度。弥散方程解的长波和短波渐近线以封闭的分析形式出现。该方程的数值解构造在入射场频率的宽范围内,该范围覆盖了传播波的长波,中波和短波区域。针对夹杂物的各种弹性,密度和体积浓度,计算了平均波场的相速度和衰减因子。给出了该方法的预测结果与一些实验数据的比较。指出并讨论了该方法的可能错误。

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