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Thermoelastic buckling of FGM conical shells under non-linear temperature rise in the framework of the shear deformation theory

机译:剪切变形理论框架下非线性温度升高下FGM圆锥壳的热弹性屈曲

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摘要

In this study, the thermoelastic buckling of functionally graded material (FGM) conical shells under nonlinear temperature rise across the thickness in the framework of the shear deformation theory (SDT) is investigated. To the derivation of basic equations is used modified Donnell-type shell theory. The Galerkin method is used to obtain the formula for non-linear buckling temperature difference of freely supported FGM truncated conical shell in the framework of the SDT. By changing the properties of FGMs and volume fraction index, the effect of transverse shear deformations on the non-linear buckling temperature difference is evaluated by comparing with the results of the classical shell theory (CST). Meanwhile, the effect of geometric parameters on the non-linear buckling temperature difference of the shear deformable FGM conical shells is discussed in detail. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项研究中,在剪切变形理论(SDT)的框架内,研究了功能梯度材料(FGM)锥形壳在厚度范围内的非线性温度升高下的热弹性屈曲。为了推导基本方程式,使用了改进的Donnell型壳理论。在SDT框架内,利用Galerkin方法获得了自由支撑的FGM截头圆锥壳的非线性屈曲温差公式。通过改变FGMs的性质和体积分数指数,通过与经典壳理论(CST)的结果进行比较,评估了横向剪切变形对非线性屈曲温差的影响。同时,详细讨论了几何参数对可剪切变形的FGM圆锥壳非线性屈曲温差的影响。 (C)2016 Elsevier Ltd.保留所有权利。

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