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Wave propagation in nonlocal microstretch solid

机译:波在非局部微拉伸固体中的传播

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This work investigates the possibility of plane waves propagating through an isotropic nonlocal microstretch solid of infinite extent. Five basic waves consisting of three longitudinal waves and two transverse waves may travel with distinct speeds. All these waves are frequency dependent and hence, dispersive in nature. The nonlocal parameter is present in the analytical expressions of phase speeds of all the existing waves. A comparison is also made to study the variation of phase speeds against nonlocal parameter. It is found that dispersion curves possess five branches: (a) a longitudinal acoustic branch, (b) a transverse acoustic branch, and (c) three optic branches. The reflection phenomenon of plane longitudinal wave incident at a stress free boundary surface of a nonlocal microstretch elastic half-space is studied and the formulae for various reflection coefficients are obtained. The variation of these reflection coefficients with angle of incidence has also been depicted graphically for a specific model.
机译:这项工作研究了平面波传播通过无限范围的各向同性非局部微拉伸固体的可能性。由三个纵波和两个横波组成的五个基波可能以不同的速度传播。所有这些波都是频率相关的,因此本质上是分散的。非局部参数存在于所有现有波的相速度的解析表达式中。还进行了比较以研究相速度相对于非局部参数的变化。发现色散曲线具有五个分支:(a)纵向声学分支,(b)横向声学分支,(c)三个光学分支。研究了平面纵波入射到非局部微拉伸弹性半空间无应力边界面上的反射现象,得到了各种反射系数的公式。对于特定的模型,这些反射系数随入射角的变化也已经用图形表示。

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