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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Static analysis of functionally graded plates with a porous middle layer based on higher order shear deformation theory with linear/quadratic transverse displacement
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Static analysis of functionally graded plates with a porous middle layer based on higher order shear deformation theory with linear/quadratic transverse displacement

机译:基于高阶剪切变形理论与线性/二次横向位移的多孔中间层功能渐变平板的静态分析

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摘要

In this article, we present an analytical solution for an imperfect functionally graded plate based on higher order shear deformation theory with cubic variation of in-plane displacements according to thickness and linear/quadratic transverse displacement. The developed solution is used to analyze the static responses of a plate with a porous layer to mechanical loading. Two porosity types and their influences on material properties, displacement, and stress behaviors are considered. The network of pores is assumed to be empty or filled with low-pressure air, and the material properties are calculated using power-law distribution idealization in terms of the volume fractions of constituents. The computed results are presented to illustrate the accuracy of the proposed solutions based on comparisons to previously reported analytical and numerical solutions in the literature. We also analyzed the effects of different volume fractions and thicknesses of porous layers on the mechanical loading and mechanical behavior of the imperfect functionally graded plate.
机译:在本文中,我们在根据厚度和线性/二次横向位移的平面内位移的高阶剪切变形理论,给出了一种基于高阶剪切变形理论的不完美功能梯度板的分析解决方案。开发的解决方案用于分析具有多孔层的板的静电响应以机械负载。考虑了两种孔隙率类型及其对材料性质,位移和应力行为的影响。假设孔的网络是空的或填充低压空气,并且在组分的体积分数方面使用功率法分布理想来计算材料特性。提出了计算结果以说明基于对文献中先前报道的分析和数值解决方案的比较来说明所提出的解决方案的准确性。我们还分析了不同体积分数和多孔层厚度对功能梯度板的机械负载和机械行为的影响。

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