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首页> 外文期刊>Steel & Composite Structures: An International Journal >Experimental and numerical investigations on axial strength of back-to-back built-up cold-formed steel angle columns
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Experimental and numerical investigations on axial strength of back-to-back built-up cold-formed steel angle columns

机译:背靠背内置冷成型钢角柱轴向强度的实验性和数值研究

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摘要

In cold-formed steel (CFS) structures, such as trusses, wall frames and columns, the use of back-to-back built-up CFS angle sections are becoming increasingly popular. In such an arrangement, intermediate fasteners are required at discrete points along the length, preventing the angle-sections from buckling independently. Limited research is available in the literature on the axial strength of back-to-back built-up CFS angle sections. The issue is addressed herein. This paper presents the results of 16 experimental tests, conducted on back-to-back built-up CFS screw fastened angle sections under axial compression. A nonlinear finite element model is then described, which includes material non-linearity, geometric imperfections and explicit modelling of the intermediate fasteners. The finite element model was validated against the experimental test results. The validated finite element model was then used for the purpose of a parametric study comprising 66 models. The effect of fastener spacing on axial strength was investigated. Four different cross-sections and two different thicknesses were analyzed in the parametric study, varying the slenderness ratio of the built-up columns from 20 to 120. Axial strengths obtained from the experimental tests and finite element analysis were used to assess the performance of the current design guidelines as per the Direct Strength Method (DSM); obtained comparison showed that the DSM is over-conservative by 13% on average. This paper has therefore proposed improved design rules for the DSM and verified their accuracy against the finite element and test results of back-to-back built-up CFS angle sections under axial compression.
机译:在冷成型的钢(CFS)结构中,例如桁架,墙壁框架和柱,使用背靠背的构建CFS角度部分变得越来越受欢迎。在这种布置中,沿着长度的离散点处需要中间紧固件,防止角度部分独立地弯曲。在文献中有限的研究可以在背靠背的构建CFS角部的轴向强度上提供。此问题在此处解决。本文介绍了16项实验测试的结果,在轴向压缩下的背靠背内置CFS螺钉紧固角度部分进行。然后描述非线性有限元模型,其包括材料非线性,几何缺陷和中间紧固件的显式建模。针对实验测试结果验证了有限元模型。然后将验证的有限元模型用于包括66个模型的参数研究的目的。研究了紧固件间距对轴向强度的影响。在参数研究中分析了四种不同的横截面和两种不同的厚度,改变了20至120〜120的内置柱的细长比。从实验测试和有限元分析中获得的轴向强度评估了该性能目前的设计指南根据直接强度法(DSM);获得的比较表明,DSM平均过度保守13%。因此,本文提出了DSM的改进设计规则,并在轴向压缩下验证了对有限元的有限元和测试结果的准确性和测试结果。

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