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首页> 外文期刊>Journal of vibration and control: JVC >Buckling and vibration analysis of FG-CNT-reinforced composite rectangular thick nanoplates resting on Kerr foundation based on nonlocal strain gradient theory
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Buckling and vibration analysis of FG-CNT-reinforced composite rectangular thick nanoplates resting on Kerr foundation based on nonlocal strain gradient theory

机译:基于非局部应变梯度理论的Kerr基础依赖于克尔基础的FG-CNT增强复合矩形厚纳米型屈曲和振动分析

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摘要

This paper investigates the buckling and free vibration analysis of functionally graded carbon nanotube-reinforced composite thick rectangular nanoplates resting on a Kerr foundation under different boundary conditions. Quasi-three-dimensional hyperbolic shear deformation theory is employed to study the effects of transverse shear deformation and thickness stretching. To capture the small-size effects of nanoscale dimensions, the nonlocal strain gradient theory is used, which includes nonlocal parameters and length scale of the material. In this study, rectangular nanocomposite plates are reinforced by carbon nanotubes which are assumed to be graded through the thickness direction with four types of distributions, namely, uniformly, FG-O, FG-V, and FG-X. The governing equations and boundary conditions are extracted within Hamilton's principle. They are discretized and numerically solved by utilizing a generalized differential quadrature method. The critical buckling loads and natural frequencies are determined by solving the eigenvalue problem. The accuracy of present results is validated with those available in the literature. Also, the effect of various factors, such as aspect ratio, length-to-thickness ratio, in-plane loading factor, length scale parameter, nonlocal parameter, volume fraction and dispersion profile of carbon nanotubes, elastic foundation coefficients, and different boundary conditions, on the buckling behavior and free vibration of nanoplates is investigated.
机译:本文研究了在不同边界条件下在KERR基础上基于Kerr基础的功能梯度碳纳米管增强复合厚矩形纳米板的屈曲和自由振动分析。准三维双曲剪切变形理论用于研究横向剪切变形和厚度拉伸的影响。为了捕获纳米级尺寸的小尺寸效果,使用非局部应变梯度理论,包括非本体参数和材料的长度尺度。在该研究中,矩形纳米复合板通过碳纳米管加强,该碳纳米管被假定用四种类型的分布,即均匀,FG-O,FG-V和FG-X分级。控制方程和边界条件在汉密尔顿原则内提取。它们通过利用广义差分正交方法被离散和数值解决。通过解决特征值问题确定关键屈曲负载和自然频率。目前结果的准确性验证了文献中可用的结果。此外,各种因素的效果,例如纵横比,长度厚度比,面内装载因子,长度级参数,非碳纳米管,弹性基层系数和不同边界条件的体积分数和色散分布在屈曲行为上,研究了纳米板的屈曲行为和自由振动。

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