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首页> 外文期刊>International journal of steel structures >System buckling analysis for multi-story frames subjected to nonconservative forces
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System buckling analysis for multi-story frames subjected to nonconservative forces

机译:非保守力作用下多层框架的系统屈曲分析

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摘要

The evaluation of the effective length factor (K-factor) of columns based on the system buckling approach is a convenient tool in the stability design of multi-story frames. This method is superior to other analytical approaches, such as isolated subassembly and story-based approaches, in that inter-column and inter-story interactions are inherently taken into account. In this study, in order to investigate the effect of nonconservative forces on buckling loads and K-factors for the single- and multistory framed structures, the system buckling approach is presented. For this purpose, the finite element model, based on the Hamilton's principle, is formulated for the stability analysis of framed structures subjected to nonconservative forces. In numerical examples, buckling loads and K-factors for single- and multi-story frames subjected to conservative or nonconservative forces are evaluated and compared with those obtained by other researchers. Especially the effect of the stiffness ratio of girder to column on K-factors is investigated for nonconservative systems.
机译:基于系统屈曲方法的柱有效长度因子(K因子)评估是多层框架稳定性设计的便捷工具。此方法优于其他分析方法,例如隔离的子装配和基于故事的方法,因为固有地考虑了列间和故事间的交互。在这项研究中,为了研究非保守力对单层和多层框架结构的屈曲载荷和K因子的影响,提出了系统屈曲方法。为此,基于汉密尔顿原理,建立了有限元模型,以对非保守力作用下的框架结构进行稳定性分析。在数值示例中,评估了承受保守或非保守力的单层和多层框架的屈曲载荷和K因子,并将其与其他研究人员获得的屈曲载荷和K因子进行了比较。对于非保守系统,尤其研究了梁与柱的刚度比对K因子的影响。

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