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Experimental investigation of local-flexural interactive buckling of cold- formed steel channel columns

机译:冷弯型钢槽钢柱局部-弯曲相互作用屈曲的试验研究

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This paper presents the results of a comprehensive experimental programme aimed at studying the interaction of local and overall flexural buckling in cold-formed steel (CFS) plain and lipped channels under axial compression. The results were further used to verify the accuracy of the current design procedures in Eurocode 3, as well as to evaluate the effectiveness of a previously proposed optimisation methodology. A total of 36 axial compression tests on CFS channels with three different lengths (1 m, 1.5 m and 2 m) and four different cross-sections were conducted under a concentrically applied load and pin-ended boundary conditions. The initial geometric imperfections of the specimens were measured using a specially designed set-up with laser displacement transducers. Material tests were also carried out to determine the tensile properties of the flat parts of the cross sections, as well as the cold-worked corner regions. A comparison between the experimental results and the Eurocode 3 predictions showed that the effective width approach combined with the P-M interaction equation proposed in Eurocode 3 to take into account the shift of the effective centroid consistently provided safe results. However, the Eurocode 3 procedures were also quite conservative in predicting the capacity pertaining to local global interaction buckling, especially for plain channels. Furthermore, the experimental data confirmed the results of an optimisation study and demonstrated that the optimised CFS columns exhibited a capacity which was up to 26% higher than the standard channel with the same amount of material taken as a starting point.
机译:本文介绍了一项综合实验计划的结果,该计划旨在研究轴向压缩下冷弯型钢(CFS)平面和唇形槽中局部和整体弯曲屈曲的相互作用。结果进一步用于验证Eurocode 3中当前设计程序的准确性,以及评估先前提出的优化方法的有效性。在同心施加的载荷和销端边界条件下,对具有三种不同长度(1 m,1.5 m和2 m)和四种不同横截面的CFS通道进行了总共36次轴向压缩试验。使用带有激光位移传感器的特殊设计装置测量样品的初始几何缺陷。还进行了材料测试,以确定横截面的扁平部分以及冷加工角区域的拉伸性能。实验结果与Eurocode 3预测之间的比较表明,有效宽度方法与Eurocode 3中提出的P-M相互作用方程式相结合,考虑了有效质心的偏移,始终提供了安全的结果。但是,Eurocode 3程序在预测与局部全局交互作用屈曲有关的能力方面也相当保守,尤其是对于普通渠道而言。此外,实验数据证实了优化研究的结果,并表明,以相同的材料量为起点,优化的CFS色谱柱的容量比标准通道高出26%。

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