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Length effects on interactive buckling in thin-walled rectangular hollow section struts

机译:长度对薄壁矩形空心截面支柱中屈曲的影响

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摘要

A variational model formulated using analytical techniques describing the nonlinear coupling between local and global buckling modes within an elastic thin-walled rectangular hollow section strut is presented. A system of nonlinear differential and integral equations subject to boundary conditions is derived and solved using numerical continuation techniques. The nonlinear behaviour of four representative lengths is investigated, which are characterized by the post-buckling equilibrium paths. The numerical results from the variational model are validated using a nonlinear finite element model and largely show excellent comparisons, particularly for the practically important ultimate load and the initial post-buckling behaviour. Boundaries for the four distinct length-dependent zones are identified and the most unstable zone is demonstrated to have a considerably narrower length range than previously determined for practical corner boundary conditions within the cross-section.
机译:提出了使用分析技术制定的变分模型,该模型描述了弹性薄壁矩形空心截面支杆内局部和整体屈曲模式之间的非线性耦合。使用数值连续技术推导并求解了受边界条件影响的非线性微分和积分方程组。研究了四个代表性长度的非线性行为,其特征在于屈曲后的平衡路径。使用非线性有限元模型验证了变分模型的数值结果,并在很大程度上显示了出色的比较,特别是对于实际上重要的极限载荷和初始屈曲后的行为。确定了四个不同的与长度有关的区域的边界,并且证明了最不稳定的区域的长度范围比以前在横截面中实际拐角边界条件所确定的范围要窄得多。

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