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Buckling and vibration analysis of embedded functionally graded carbon nanotube-reinforced composite annular sector plates under thermal loading

机译:嵌入式功能梯度碳纳米管增强复合环形扇形板在热载荷下的屈曲和振动分析

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摘要

The main objective of this paper is to present the buckling and vibration analysis of thermally prestressed functionally graded carbon-nanotube-reinforced composite (FG-CNTRC) annular sector plates resting on the elastic foundation via the variational differential quadrature (VDQ) method. The material properties of nanocomposite plate are considered to continuously vary across the thickness and are estimated according to the modified rule of mixture. The governing equations are derived on the basis of first order shear deformation theory. Applying two-dimensional generalized differential quadrature (GDQ) method, the energy functional of the structure is discretized. Then, based on Hamilton's principle and the VDQ method, the reduced forms of mass and stiffness matrices are obtained. After verifying the accuracy of the present method, comprehensive numerical results are presented to examine the effects of important parameters on the stability and vibrational behavior of the nanotube-reinforced composite annular sector plates. The results indicate that functionally graded distributions of CNTs in the thickness direction and the increase of elastic foundation coefficients can improve the stability of the structure. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文的主要目的是通过变分求积法(VDQ)来介绍位于弹性基础上的热预应力功能梯度碳纳米管增强复合材料(FG-CNTRC)环形扇形板的屈曲和振动分析。纳米复合板的材料性能被认为在整个厚度上是连续变化的,并根据修改后的混合物规则进行估算。根据一阶剪切变形理论推导了控制方程。应用二维广义差分正交积分法(GDQ),对结构的能量函数进行离散化。然后,基于汉密尔顿原理和VDQ方法,获得质量和刚度矩阵的简化形式。在验证了本方法的准确性之后,给出了综合的数值结果以检验重要参数对纳米管增强复合环形扇形板的稳定性和振动行为的影响。结果表明,碳纳米管在厚度方向上的功能梯度分布和弹性基础系数的增加可以提高结构的稳定性。 (C)2016 Elsevier Ltd.保留所有权利。

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