首页> 外文期刊>Journal of Sandwich Structures and Materials >Nonlinear stability analysis of stiffened functionally graded material sandwich cylindrical shells with general Sigmoid law and power law in thermal environment using third-order shear deformation theory
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Nonlinear stability analysis of stiffened functionally graded material sandwich cylindrical shells with general Sigmoid law and power law in thermal environment using third-order shear deformation theory

机译:采用三阶剪切变形理论,在热环境中具有总六翼类法和动力法的加强功能分析夹层圆柱壳的非线性稳定性分析

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摘要

This paper investigates analytically nonlinear buckling and postbuckling of functionally graded sandwich circular thick cylindrical shells filled inside by Pasternak two-parameter elastic foundations under thermal loads and axial compression loads. Shells are reinforced by closely spaced functionally graded material (FGM) rings and stringers. The temperature field is taken into account. Two general Sigmoid law and general power law, with four models of stiffened FGM sandwich cylindrical shell, are proposed. Using the Reddy's third-order shear deformation shell theory (TSDT), stress function, and Lekhnitsky's smeared stiffeners technique, the governing equations are derived. The closed form to determine critical axial load and postbuckling load-deflection curves are obtained by the Galerkin method. The effects of the face sheet thickness to total thickness ratio, stiffener, foundation, material, and dimensional parameters on critical thermal loads, critical mechanical loads and postbuckling behavior of shells are analyzed. In addition, this paper shows that for thin shells we can use the classical shell theory to investigate stability behavior of shell, but for thicker shells the use of TSDT for analyzing nonlinear stability of shell is necessary and suitable.
机译:本文研究了在热负荷下通过Pasternak双参数弹性基础填充的功能渐变夹层圆形圆柱壳的分析非线性弯曲和错误的圆柱形圆柱形壳。壳体通过紧密间隔的功能分级材料(FGM)环和桁条加固。温度场被考虑在内。提出了两个综合赛族法律和一般动力法,提出了四种模型的加强的FGM夹层圆柱壳。使用Reddy的三阶剪切变形壳理论(TSDT),应力功能和Lekhnitsky的涂抹加强筋技术,得到了控制方程。通过Galerkin方法获得封闭形式以确定关键轴向载荷和后载荷偏转曲线。分析了面板厚度对临界热负荷,临界机械载荷和壳体后突出的尺寸参数的总厚度比,加强件,基础,材料和尺寸参数的影响。此外,本文表明,对于薄壳,我们可以使用经典的壳理论来研究壳的稳定性行为,但对于较厚的壳体,使用TSDT用于分析壳体非线性稳定性的使用。

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