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Surface/interface effects on the effective propagation constants of coherent waves in composites with random parallel nanofibers

机译:表面/界面对随机平行纳米纤维复合材料中相干波有效传播常数的影响

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The effective propagation constants of elastic waves in an inhomogeneous medium with randomly distributed parallel cylindrical nanofibers are studied. First, the surface energy theory proposed by Huang and Wang (Handbook of Micromechanics and Nanomechanics, 2013) is used to derive the nontraditional boundary conditions on the surfaces of the nanoholes and the interfaces between the nanofibers and the host. Then, the scattering matrix of individual scatterer (cylindrical hole or nanofiber) is derived from the nontraditional boundary condition. The total wave field is obtained by considering the multiple scattering processes among the dispersive scatterers. The configuration average of the total wave field results in the coherent waves or the averaged waves. By using the corrected Linton-Martin formula, the effective propagation constants (effective speed and effective attenuation) of the coherent waves are estimated. The in-plane waves (P and SV waves) and the anti-plane waves (SH wave) are considered, respectively, and the numerical results are shown graphically. Apart from the effects of surface elasticity, the effects of inertia of surface/interface and the effects of residual surface tension (which are often ignored in the previous literature) are also considered. Moreover, the influences of the nonsymmetric parts of in-plane surface stress and the out-of-plane parts of the surface stress are both discussed first based on the numerical examples. These investigations show the underestimation and overestimation of effective propagation constants caused by various simplifications. (C) 2016 Acoustical Society of America.
机译:研究了弹性波在具有随机分布的平行圆柱纳米纤维的非均匀介质中的有效传播常数。首先,黄和王提出的表面能理论(微力学和纳米力学手册,2013)被用来推导纳米孔表面以及纳米纤维与主体之间的界面的非传统边界条件。然后,从非传统边界条件导出单个散射体(圆柱孔或纳米纤维)的散射矩阵。通过考虑色散散射体之间的多重散射过程来获得总波场。总波场的构型平均值产生相干波或平均波。通过使用校正的Linton-Martin公式,可以估算相干波的有效传播常数(有效速度和有效衰减)。分别考虑了面内波(P和SV波)和反面波(SH波),并以图形方式显示了数值结果。除了表面弹性的影响外,还考虑了表面/界面惯性的影响和残余表面张力的影响(在以前的文献中经常忽略)。此外,首先基于数值示例讨论了平面内表面应力的非对称部分和表面应力的平面外部分的影响。这些研究表明,由于各种简化而导致的有效传播常数被低估和高估了。 (C)2016年美国声学学会。

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