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Buckling Analysis of Eccentrically Stiffened Functionally Graded Toroidal Shell Segments under Mechanical Load

机译:机械载荷作用下偏心加筋功能梯度环形壳节的屈曲分析

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摘要

An analytical approach is presented to investigate the linear buckling of eccentrically stiffened functionally graded thin toroidal shell segments subjected to axial compression, lateral pressure, and hydrostatic pressure. On the basis of classical thin shell theory, the smeared stiffener technique and the adjacent equilibrium criterion, the governing equations of buckling of eccentrically stiffened functionally graded toroidal shell segments are derived. The functionally graded toroidal shell segments with simply supported edges are reinforced by a ring and stringer stiffener system on an external surface. The resulting equations in the case of compressive and pressure loads are solved directly. The obtained results show the effects of stiffeners and input factors on the buckling behavior of these structures. In this paper, the results are also compared with the solutions published in the literature for the specific cases of a toroidal shell. (C) 2015 American Society of Civil Engineers.
机译:提出了一种分析方法来研究承受轴向压缩,侧向压力和静水压力的偏心加筋的功能梯度薄环形壳分段的线性屈曲。基于经典薄壳理论,涂抹加劲肋技术和邻近平衡准则,推导了偏心加筋功能梯度环形壳节曲屈曲的控制方程。具有简单支撑边缘的功能渐变环形壳段通过外表面上的环形和纵梁加劲肋系统进行了加固。在压缩和压力载荷的情况下,所得方程直接求解。所得结果表明加劲肋和输入因子对这些结构的屈曲行为的影响。在本文中,还将结果与文献中针对环形壳的特定情况发布的解决方案进行了比较。 (C)2015年美国土木工程师学会。

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