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Numerical investigation on the composite action of cold-formed steel built-up battened columns

机译:冷成型钢复合作用的数值研究 - 塑料钢筋柱

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摘要

Cold-formed steel (CFS) built-up sections are widely used to achieve adequate load-bearing capacity when individual shapes are not able to resist the design loads. In the existing codes, there are few guidelines for designing and fabricating these members. This paper evaluates the influence of fastener patterns and spacing as well as reinforcing plates on the global and local buckling behavior of the CFS battened columns comprising two individual lipped channels. A large set of experimental results, available in the literature, were considered for the calibration of the developed numerical models. The effectiveness of the composite action between all profiles is crucial to fully exploit the capabilities of the built-up sections. To evaluate the performance of the investigated battened columns as well as the influence of spacing and configuration of the connecting plates, a large numerical investigation was undertaken. The results showed improved axial load-bearing capacity for the CFS battened columns when the number of fasteners rows was increased. Considering the spacing of the battened plates and their configuration, detailed analysis was conducted on the predominant buckling modes. The numerical results were also compared with analytical predictions based on Eurocode and the North American Specification (NAS). The results of this paper recommend that three rows of fasteners per battened plate are the optimal scenario for achieving composite action within the CFS built-up sections.
机译:当各个形状无法抵抗设计负载时,冷成型钢(CFS)内置部分被广泛用于实现足够的承载能力。在现有代码中,有很少的设计准则和制造这些成员。本文评估了紧固件图案和间距以及增强板对包括两个单独唇通道的CFS施加柱的全局和局部屈曲行为。考虑了文献中提供的大量实验结果,用于校准开发的数值模型。所有配置文件之间的复合动作的有效性至关重要,以充分利用内置部分的功能。为了评估所调查的施加柱的性能以及连接板的间距和配置的影响,进行了大量的数值研究。结果表明,当紧固件行的数量增加时,CFS伸缩柱的轴向承载能力改善。考虑到施力板及其构型的间距,对主要屈曲模式进行了详细的分析。还与基于欧洲码和北美规范(NAS)的分析预测进行了比较了数值结果。本文的结果建议每次压板三排紧固件是实现CFS内置部分内的复合动作的最佳场景。

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