Wave Dispersion in Multilayered Reinforced Nonlocal Plates under Nonlinearly Varying Initial Stress

M. R. Farajpour, A. Shahidi, A. Farajpour
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Abstract

This paper deals with the effects of initial stress on wave propagations in small-scale plates with shape memory alloy (SMA) nanoscale wires. The initial stress is exerted on the small-scale plate along both in-plane directions. A scale-dependent model of plates is developed for taking into consideration size influences on the wave propagation. In addition, in order to take into account the effects of SMA nanoscale wires, the one-dimensional Brinson’s model is applied. A set of coupled differential equations is obtained for the non-uniformly prestressed small-scale plate with SMA nanoscale wires. An exact solution is obtained for the phase and group velocities of the prestressed small-scale system. The influences of non-uniformly distributed initial stresses as well as scale and SMA effects on the phase and group velocities are explored and discussed. It is found that initial stresses as well as the orientation and volume fraction of SMA nanoscale wires can be used as a controlling factor for the wave propagation characteristics of small-scale plates.
非线性初始应力变化下多层非局部增强板的波频散
本文研究了初始应力对形状记忆合金(SMA)纳米线在小尺度板中的波传播的影响。初始应力沿两个面内方向施加在小尺度板上。为了考虑尺寸对波传播的影响,建立了板的比例依赖模型。此外,为了考虑SMA纳米线的影响,采用一维Brinson模型。得到了含SMA纳米线的非均匀预应力小尺度板的耦合微分方程。得到了预应力小尺度体系相速度和群速度的精确解。探讨了非均匀分布的初始应力以及尺度效应和SMA效应对相速度和群速度的影响。研究发现,初始应力以及SMA纳米线的取向和体积分数可以作为小尺度板波传播特性的控制因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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