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Compressive behavior of built-up double-box columns consisting of four cold-formed steel channels

机译:由四个冷成型钢通道组成的内置双箱柱的压缩行为

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Thirty specimens of built-up double-box columns consisting of four cold-formed steel channels were experimentally tested under concentric and eccentric axial compression. The test specimens had varied cross-sectional dimensions (outside dimensions equal to 89 mm x 147 mm or 86 mm x 96 mm), different effective lengths (3200 mm, 1700 mm, 210 mm, or 135 mm), and different thicknesses (1.2 mm or 1.5 mm). The load vs. displacement curves and the measured compression strength of specimens were obtained and the failure modes were analyzed. The WA results showed that the failure mode of the long specimens (L/r between 103 and 108, where L is the calculated length of the column, r is the minimum radius of gyration) was flexural buckling about the weak axis. The typical failure modes of medium length specimens (L/r between 53 and 57) and short specimens (L/r between 4 and 8) subjected to concentric axial compression were deformation concentration caused by large local buckling. The failure mode of the medium length specimens under eccentric axial compression was flexural buckling, except for the specimens whose web height was 147 mm and the eccentricity direction was along the minor axis, for which the failure mode was deformation concentration. Then, finite element (FE) models considering geometric, material, and contact nonlinearity were developed, compared to experimental results, and used to explore a wider design space. The FE analysis results showed that the slenderness ratio of the column and the web height-to-thickness ratio have an important influence on the strength of these columns. Finally, the applicability and effectiveness of calculating compression strength for this type of built-up column using methods such as "Effective Ratio of Width-to-Thickness Method" in Chinese code, "Effective Width Method" in AISI and "Direct Strength Method" in AISI, were evaluated by comparison with the WA and FE results. For all the columns analyzed with slenderness ratio greater than 105, it is reasonable to use these methods to calculate the concentric axial compression strength of columns. The methods in China and AISI S100-16 were found to be conservative for calculating the eccentric axial compression strengths of these built-up double box columns.
机译:由四个冷成型钢通道组成的30个内置双箱柱标本在同心和偏心轴向压缩下进行实验测试。试样具有各种横截面尺寸(外部尺寸等于89mm×147mm或86mm×96mm),不同的有效长度(3200mm,1700mm,210 mm或135 mm)和不同的厚度(1.2 mm或1.5 mm)。获得负载与位移曲线和样本的测量的压缩强度,分析失效模式。 WA结果表明,长试的失效模式(L / R为103和108,其中L是柱的计算的长度,R是旋转最小循环的最小半径)是弯曲围绕弱轴的弯曲弯曲。培养基长度样品(53和57之间的L / R)和短的样品(L / R为4和8之间)经受同心轴向压缩的典型故障模式是由大型局部屈曲引起的变形浓度。偏心轴向压缩下的中长度样品的故障模式是弯曲弯曲,除了腹板高度为147mm的样本,偏心方向沿着短轴,失效模式变形浓度。然后,与实验结果相比,显着考虑几何,材料和接触非线性的有限元(FE)模型,并用于探索更广泛的设计空间。 Fe分析结果表明,柱的细长比和幅材高度到厚度比对这些柱的强度具有重要影响。最后,使用中国代码中“有效宽度法”中的“有效宽度法”,“直接强度法”等方法,计算这种类型的内置柱的压缩强度的适用性和有效性。在AISI中,通过与WA和FE结果进行比较来评估。对于以大于105的纤细比分析的所有列,使用这些方法计算柱的同心轴向压缩强度是合理的。发现中国和AISI S100-16的方法是为了计算这些内置双箱柱的偏心轴向压缩优势的保守。

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