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Elastic Wave Scattering in Porous Unidirectional Fiber-reinforced Composites

机译:多孔单向纤维增强复合材料的弹性波散射

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摘要

Scattering of elastic waves in unidirectional fiber-reinforced porous-matrix composites is studied using novel features of Biot classic model for dynamic poroelasticity.The method of separation of variables along with the appropriate wave field expansions,the pertinent boundary conditions,and the translational addition theorems for cylindrical wave functions are employed to develop a closed-form solution in form of infinite series.The analytical results are illustrated with numerical examples in which a pair of rigid or elastic fibers are insonified by a plane fast compressional or shear wave at end-on/broadside incidence.The effects of incident wave frequency,proximity of the two fibers,fiber material properties and angle of incidence on the far-field backscattered radial and shearing stress amplitudes are examined.Particular attention has been focused on multiple scattering interactions in addition to the slow wave coupling effects which is known to be the primary distinction of the scattering phenomenon in poroelasticity from the classical elastic case.Limiting cases are considered and fair agreements with well-known solutions are established.
机译:利用动态多孔弹性的Biot经典模型的新特性研究了单向纤维增强多孔基复合材料中弹性波的散射。变量的分离方法以及适当的波场扩展,相关的边界条件和平移加法则圆柱波函数被用于开发无限级数形式的闭式解。分析结果通过数值示例进行说明,其中一对刚性或弹性纤维在末端通过平面快速压缩波或剪切波声处理/宽边入射。研究了入射波频率,两条纤维的接近度,纤维材料特性和入射角对远场反向散射径向和剪切应力幅度的影响。除多重散射相互作用外,还特别关注慢波耦合效应是已知的主要区别从经典弹性情况出发,分析了孔隙弹性中的散射现象。考虑了有限情况,并建立了与知名解决方案的公平协议。

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