A reduced model for nonlinear analysis and design of thin-walled structures prone to multi-modal buckling

D. Magisano, F. Liguori, L. Leonetti, A. Madeo, G. Garcea
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Abstract

The Koiter method is a reduction technique based on a multi-modal quadratic asymptotic expansion of the finite element model for recovering the equilibrium path of an elastic structure prone to buckling. Its main feature is the possibility of performing an inexpensive sensitivity analysis to geometrical imperfections by including the effects of the deviations in the reduced model of the perfect structure. The method is so efficient that can be used for optimal design of slender structures, where it provides the collapse load associated to each set of design parameters taking into account the nonlinear behaviour and the worst-shape imperfection at a computational cost similar to a linearised buckling analysis.
多模态屈曲薄壁结构非线性分析与设计的简化模型
Koiter方法是一种基于有限元模型的多模态二次渐近展开的还原技术,用于恢复易屈曲弹性结构的平衡路径。它的主要特点是通过在完美结构的简化模型中包括偏差的影响,可以对几何缺陷进行廉价的灵敏度分析。该方法非常有效,可以用于细长结构的优化设计,其中它提供了与每组设计参数相关的崩溃载荷,考虑了非线性行为和最坏形状缺陷,计算成本与线性屈曲分析相似。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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