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A new approach for nonlinear buckling analysis of imperfect functionally graded carbon nanotube-reinforced composite plates

机译:不完全功能梯度碳纳米管增强复合材料板非线性屈曲分析的新方法

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This paper presents an analytical approach to analyze the nonlinear static buckling of imperfect functionally graded carbon nano-reinforced composite (FG-CNTRC) plates subjected to axial compression. The material properties of the FG-CNTRC are assumed to be graded through the thickness direction according to several linear distributions of the volume fraction of carbon nanotubes. The theoretical formulations are based on the classical plate theory (Kirchhoff plate) with von Karman-type of nonlinearity and the initial geometrical imperfection. The approximate solution is developed for simply supported and freely movable boundary conditions. By applying the traditional Galerkin method and the Airy stress function, the results for the critical load are obtained in closed-form solutions, which are convenient to be used in engineering design. Some illustrative examples are also presented in details to investigate the effects of the imperfection, carbon nanotubes, and geometrical parameters on the nonlinear static behavior the plates. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文提出了一种分析方法,用于分析不完全功能梯度的碳纳米增强复合材料(FG-CNTRC)板在轴向压缩下的非线性静态屈曲。假设FG-CNTRC的材料特性是根据碳纳米管体积分数的几种线性分布在厚度方向上分级的。理论公式是基于经典板理论(基尔霍夫板)的,具有von Karman类型的非线性和初始几何缺陷。针对简单支撑和可自由移动的边界条件开发了近似解决方案。通过应用传统的Galerkin方法和Airy应力函数,可以在封闭形式的解中获得临界载荷的结果,便于在工程设计中使用。还详细介绍了一些说明性示例,以研究缺陷,碳纳米管和几何参数对板的非线性静态行为的影响。 (C)2017 Elsevier Ltd.保留所有权利。

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