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Application of nonlocal elasticity theory on the wave propagation of flexoelectric functionally graded (FG) timoshenko nano-beams considering surface effects and residual surface stress

机译:非局部弹性理论在考虑表面效应和残余表面应力的柔性功能梯度(FG)季莫申科纳米束的波传播中的应用

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This research deals with wave propagation of the functionally graded (FG) nano-beams based on the nonlocal elasticity theory considering surface and flexoelectric effects. The FG nano-beam is resting in Winkler-Pastemak foundation. It is assumed that the material properties of the nano-beam changes continuously along the thickness direction according to simple power-law form. In order to include coupling of strain gradients and electrical polarizations in governing equations of motion, the nonlocal non-classical nano-beam model containg flexoelectric effect is used. Also, the effects of surface elasticity, dielectricity and piezoelectricity as well as bulk flexoelectricity are all taken into consideration. The governing equations of motion are derived using Hamilton principle based on first shear deformation beam theory (FSDBT) and also considering residual surface stresses. The analytical method is used to calculate phase velocity of wave propagation in FG nano-beam as well as cutoff frequency. After verification with validated reference, comprehensive numerical results are presented to investigate the influence of important parameters such as flexoelectric coefficients of the surface, bulk and residual surface stresses, Winkler and shear coefficients of foundation, power gradient index of FG material, and geometric dimensions on the wave propagation characteristics of FG nano-beam. The numerical results indicate that considering surface effects/flexoelectric property caused phase velocity increases/decreases in low wave number range, respectively. The influences of aforementioned parameters on the occurrence cut-off frequency point are very small.
机译:这项研究基于表面和柔电效应的非局部弹性理论,研究功能梯度(FG)纳米束的波传播。 FG纳米束位于Winkler-Pastemak基础中。假定纳米束的材料特性根据简单的幂律形式沿厚度方向连续变化。为了在控制运动方程中包括应变梯度和电极化的耦合,使用了包含柔电效应的非局部非经典纳米束模型。同样,还考虑了表面弹性,介电性和压电性以及体积挠性的影响。基于汉密尔顿原理,基于第一剪切变形梁理论(FSDBT)并考虑了残余表面应力,导出了运动控制方程。该分析方法用于计算FG纳米束中波传播的相速度以及截止频率。在使用经过验证的参考进行验证之后,将给出综合的数值结果,以研究重要参数的影响,例如表面的柔电系数,体积和残余表面应力,地基的Winkler和剪切系数,FG材料的功率梯度指数以及几何尺寸。 FG纳米束的波传播特性数值结果表明,在低波数范围内,考虑表面效应/柔电特性引起的相速度分别增加/减小。上述参数对出现截止频率点的影响很小。

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