首页> 外文期刊>Latin American Journal of Solids and Structures >Nonlinear Analysis on Buckling and Postbuckling of Stiffened FGM Imperfect Cylindrical Shells Filled Inside by Elastic Foundations in Thermal Environment Using TSDT
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Nonlinear Analysis on Buckling and Postbuckling of Stiffened FGM Imperfect Cylindrical Shells Filled Inside by Elastic Foundations in Thermal Environment Using TSDT

机译:基于TSDT的弹性地基填充的刚性FGM缺陷圆柱壳屈曲和后屈曲的非线性分析。

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The main aim of this paper is to investigate analytically nonlinear buckling and post-buckling of functionally graded stiffened circular cylindrical shells filled inside by Pasternak two-parameter elastic foundations in thermal environments and under axial compression load and external pressure by analytical approach. Shells are reinforced by closely spaced rings and stringers. The material properties of shell and the stiffeners are assumed to be continuously graded in the thickness direction. Using the Reddy third order shear deformation shell theory, stress function method and Lekhnitskii smeared stiffeners technique, the governing equations are derived. The closed form to determine critical axial load and post-buckling load-deflection curves are obtained by Galerkin method. The effects of temperature, stiffener, foundation, material and dimensional parameters on the stability behavior of shells are shown. The accuracy of the presented method is affirmed by comparisons with well-known results in references. The results shown for thick cylindrical shells, the use of TSDT for determining their critical buckling load is necessary and more suitable.
机译:本文的主要目的是通过解析方法研究在热环境下以及轴向压缩载荷和外压作用下由Pasternak两参数弹性基础填充在内部的功能梯度加筋圆柱壳的解析非线性屈曲和后屈曲。壳体由紧密间隔的环和桁条加固。假定壳体和加劲肋的材料特性在厚度方向上连续分级。利用雷迪三阶剪切变形壳理论,应力函数法和Lekhnitskii涂片加劲肋技术,推导了控制方程。通过Galerkin方法获得确定临界轴向载荷和屈曲后载荷-挠度曲线的闭合形式。显示了温度,加劲肋,基础,材料和尺寸参数对壳体稳定性行为的影响。通过与参考文献中的众所周知的结果进行比较,确定了所提出方法的准确性。对于厚圆柱壳,显示的结果是必要的,更适合使用TSDT来确定其临界屈曲载荷。

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