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Recent research advances on ECBL approach. Part Ⅰ: Plastic-elastic interactive buckling of cold-formed steel sections

机译:ECBL方法的最新研究进展。第一部分:冷弯型钢的塑性-弹性相互作用屈曲

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The objective of this two parts paper is to present some recent developments and applications of erosion of critical bifurcation load (ECBL) approach for the interactive buckling. Two different types of problems are analysed: (1) plastic-elastic interactive buckling which implements into the Ayrton-Perry interaction formula the plastic strength of the stub columns evaluated by means of local plastic mechanism analysis, and (2) elastic-elastic interactive buckling for members with perforations. The first part of the paper analyses the occurrence of local plastic mechanisms in cold-formed steel sections in compression, and how they can be implemented in the ultimate limit state analysis of the members. Actually, the failure of thin-walled cold-formed members in compression always occurs with a local plastic mechanism. Starting from this observation, the authors suggest to use in the interactive local-overall buckling analysis the sectional plastic mechanism strength instead of traditional 'effective section'. The ECBL approach is used to implement the proposed interactive buckling model. Results are compared with those of other two recent methods, namely the direct strength method and plastic effective width approach. Relevant tests are used to evaluate the three methods. Comparisons with European and American design codes are also presented in the paper.
机译:这两部分的目的是介绍交互式屈曲的临界分叉载荷侵蚀(ECBL)方法的一些最新进展和应用。分析了两种不同类型的问题:(1)塑性-弹性相互作用的屈曲,其通过局部塑性机制分析评估了短柱的塑性强度,从而将其施加到Ayrton-Perry相互作用公式中;(2)弹性-弹性相互作用的屈曲对于有穿孔的成员。本文的第一部分分析了受压的冷弯型钢中局部塑性机制的发生,以及如何在构件的极限状态分析中实现它们。实际上,薄壁冷弯构件的压缩失效总是通过局部塑性机制发生。从这一观察开始,作者建议在交互式局部整体屈曲分析中使用截面塑性机制强度,而不是传统的“有效截面”。 ECBL方法用于实现所提出的交互式屈曲模型。将结果与其他两种最新方法(即直接强度方法和塑性有效宽度方法)的结果进行比较。相关测试用于评估这三种方法。本文还介绍了与欧美设计规范的比较。

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