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首页> 外文期刊>Steel & Composite Structures: An International Journal >Post-buckling of higher-order stiffened metal foam curved shells with porosity distributions and geometrical imperfection
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Post-buckling of higher-order stiffened metal foam curved shells with porosity distributions and geometrical imperfection

机译:高阶加强金属泡沫弯曲壳,具有孔隙率分布和几何缺陷

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摘要

Based on third-order shear deformation shell theory, the present paper investigates post-buckling properties of eccentrically stiffened metal foam curved shells/panels having initial geometric imperfectness. Metal foam is considered as porous material with uniform and non-uniform models. The single-curve porous shell is subjected to in-plane compressive loads leading to post-critical stability in nonlinear regime. Via an analytical trend and employing Airy stress function, the nonlinear governing equations have been solved for calculating the post-buckling loads of stiffened geometrically imperfect metal foam curved shell. New findings display the emphasis of porosity distributions, geometrical imperfectness, foundation factors, stiffeners and geometrical parameters on post-buckling properties of porous curved shells/panels.
机译:基于三阶剪切变形壳理论,本文研究了具有初始几何不完全性的偏心加强金属泡沫弯曲壳/面板的屈曲性能。 金属泡沫被认为是具有均匀和非均匀模型的多孔材料。 对单曲线多孔壳体进行面内压缩载荷,导致非线性状态下的关键稳定性。 通过分析趋势和采用通气应力功能,已经解决了非线性控制方程,用于计算加强的几何缺乏金属泡沫弯曲壳的后屈曲负荷。 新发现显示多孔弯曲壳/面板后屈曲性能的孔隙度分布,几何不完全,基础因子,加强件和几何参数。

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