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Levy-type solution for buckling analysis of thick functionally graded rectangular plates based on the higher-order shear deformation plate theory

机译:基于高阶剪切变形板理论的厚功能梯度矩形板屈曲分析的征型解

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摘要

In this article, an analytical approach for buckling analysis of thick functionally graded rectangular plates is presented. The equilibrium and stability equations are derived according to the higher-order shear deformation plate theory. Introducing an analytical method, the coupled governing stability equations of functionally graded plate are converted into two uncoupled partial differential equations in terms of transverse displacement and a new function, called boundary layer function. Using Levy-type solution these equations are solved for the functionally graded rectangular plate with two opposite edges simply supported under different types of loading conditions. The excellent accuracy of the present analytical solution is confirmed by making some comparisons of the present results with those available in the literature. Furthermore, the effects of power of functionally graded material, plate thickness, aspect ratio, loading types and boundary conditions on the critical buckling load of the functionally graded rectangular plate are studied and discussed in details. The critical buckling loads of thick functionally graded rectangular plates with various boundary conditions are reported for the first time and can be used as benchmark.
机译:在本文中,提出了一种用于分析功能梯度厚矩形板的屈曲的分析方法。根据高阶剪切变形板理论推导了平衡方程和稳定性方程。引入一种分析方法,将功能梯度板的耦合控制稳定性方程根据横向位移和一个新函数(称为边界层函数)转换为两个非耦合偏微分方程。使用Levy型解决方案,这些方程式针对具有两个相对边缘的功能梯度矩形板在不同类型的载荷条件下得到简单支撑。通过对本结果与文献中的结果进行一些比较,可以确认本分析溶液的出色准确性。此外,研究并详细讨论了功能梯度材料的功率,板厚,纵横比,载荷类型和边界条件对功能梯度矩形板的临界屈曲载荷的影响。首次报道了具有各种边界条件的功能梯度矩形厚板的临界屈曲载荷,可以用作基准。

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