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Bending of FGM rectangular plates resting on non-uniform elastic foundations in thermal environment using an accurate theory

机译:使用准确理论,FGM矩形板搁在热环境中的非均匀弹性基础上的弯曲

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This article presents the bending analysis of FGM rectangular plates resting on non-uniform elastic foundations in thermal environment. Theoretical formulations are based on a recently developed refined shear deformation theory. The displacement field of the present theory is chosen based on nonlinear variations in the in-plane displacements through the thickness of the plate. The present theory satisfies the free transverse shear stress conditions on the top and bottom surfaces of the plate without using shear correction factor. Unlike the conventional trigonometric shear deformation theory, the present refined shear deformation theory contains only four unknowns as against five in case of other shear deformation theories. The material properties of the functionally graded plates are assumed to vary continuously through the thickness, according to a simple power law distribution of the volume fraction of the constituents. The elastic foundation is modeled as non-uniform foundation. The results of the shear deformation theories are compared together. Numerical examples cover the effects of the gradient index, plate aspect ratio, side-to-thickness ratio and elastic foundation parameters on the thermo-mechanical behavior of functionally graded plates. Numerical results show that the present theory can archive accuracy comparable to the existing higher order shear deformation theories that contain more number of unknowns.
机译:本文介绍了在热环境中非均匀弹性基础上休息的FGM矩形板的弯曲分析。理论制剂基于最近开发的精制剪切变形理论。基于通过板的厚度的面内位移中的非线性变化来选择本理论的位移场。本理论在不使用剪切校正因子的情况下满足板的顶部和底表面上的自由横向剪切应力条件。与传统的三角剪切变形理论不同,本发明的精细剪切变形理论仅包含四个未知数,如在其他剪切变形理论的情况下。根据成分的体积分数的简单功率法分布,假设功能梯度板的材料特性在厚度上连续变化。弹性基础被建模为非统一基础。将剪切变形理论的结果在一起在一起。数值示例涵盖了梯度指数,板宽高比,侧向厚度和弹性基参数对功能梯度板的热电机构的影响。数值结果表明,本理论可以归档与现有更高阶剪切变形理论相当的准确性,该变形理论包含更多数量未知数。

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