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首页> 外文期刊>Thin-Walled Structures >Buckling and postbuckling of porous cylindrical shells with functionally graded composite coating under torsion in thermal environment
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Buckling and postbuckling of porous cylindrical shells with functionally graded composite coating under torsion in thermal environment

机译:热环境下扭转作用下功能梯度复合涂层多孔圆柱壳的屈曲和后屈曲

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摘要

This paper investigates the nonlinear buckling and postbuckling of functionally graded porous circular cylindrical shells reinforced by orthogonal stiffeners resting on Pasternak elastic foundations in thermal environment and under torsional load by an analytical approach. Shells are reinforced by closely spaced stringers and rings in which material properties of the shell and the stiffeners are assumed to be continuously graded in the thickness direction. Basing on the classical shell theory with von Karman geometrical nonlinearity and smeared stiffeners technique, the governing equations are derived. Using the Galerkin method with the three-term solution of deflection, the closed form to find critical load and post-buckling response are obtained. The effects of porosity coefficient, material, temperature, dimensional parameters, stiffener and foundation are analyzed.
机译:本文通过分析方法,研究了在热环境下和扭转载荷下,在正交各向异性的帕斯特纳克弹性地基上支撑的正交加劲肋增强的功能梯度多孔圆柱壳的非线性屈曲和后屈曲。壳体通过紧密排列的桁条和环进行加强,其中,壳体和加劲肋的材料性能假定在厚度方向上连续分级。根据经典壳理论,冯·卡曼几何非线性和涂抹加劲肋技术,推导了控制方程。将Galerkin方法与挠度的三项解决方案一起使用,可以获得用于查找临界载荷和屈曲后响应的闭合形式。分析了孔隙度系数,材料,温度,尺寸参数,加劲肋和地基的影响。

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