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Interactive buckling of cable-stiffened steel columns with pin-connected crossarms

机译:带销形横臂的加筋钢柱的交互式屈曲

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Cable-stiffened steel columns can significantly enhance the stability behaviour of ordinary compression columns because of the additional stiffness offered by the pre-tensioned cables and crossarms. Most of the previous studies aimed to investigate the behaviour of stiffened steel columns with four branch crossarm systems; however, the current work focuses on investigating the interactive buckling of cable-stiffened steel columns with pin-connected three branch crossarm system via buckling analysis. The analysis shows that the crossarms remain straight in the antisymmetric buckling mode, which distinguishes them from stiffened columns with rigidly connected crossarms. In addition, the interactive buckling must be considered in nonlinear buckling analyses in some cases to obtain the actual capacities of the stiffened columns. The method to consider the interactive buckling is to introduce asymmetric initial geometric imperfections during buckling analysis; the principle to form the asymmetric initial imperfections is suggested. (C) 2018 Elsevier Ltd. All rights reserved.
机译:电缆加劲的钢柱可以显着增强普通压缩柱的稳定性,因为预张紧的电缆和横臂提供了额外的刚度。先前的大多数研究旨在研究带有四个分支横臂系统的加劲钢柱的性能。然而,目前的工作集中在通过屈曲分析研究销钉连接的三分支横臂系统对加筋钢柱的交互式屈曲。分析表明,横梁在反对称屈曲模式下保持笔直,这使其与带有刚性连接横梁的加硬立柱区别开来。此外,在某些情况下,非线性屈曲分析中必须考虑交互式屈曲,以获取加筋柱的实际承载力。考虑交互式屈曲的方法是在屈曲分析过程中引入不对称的初始几何缺陷。提出了形成不对称初始缺陷的原理。 (C)2018 Elsevier Ltd.保留所有权利。

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