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Experimental Study and Effective Width Method for Cold-Formed Steel Lipped Channel Stud Columns with Holes

机译:具有孔的冷成型钢锁定沟道柱柱的实验研究与有效宽度方法

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The objective of this paper is to investigate the buckling behavior and to present the design method of the ultimate strength in the basic effective width method (EWM) for cold-formed steel (CFS) lipped channel stud columns with holes in the web. 28 column tests were conducted under axial compression on the CFS lipped channel stud columns with circular and rectangular holes in different dimensions of cross sections and holes. The tested stud columns included 4 members without holes, 12 members with circular holes, and 12 members with rectangular holes. The test results showed that the stud columns with holes were governed by local buckling or the interaction of local buckling and distortional buckling. Compared with the stud columns without holes, the small hole had a slight influence on the ultimate strength of the tested specimens, and the large hole had a great effect on the ultimate strength of the tested specimens. The load capacities of the specimens decreased with the increase of the dimension of holes. Then, the finite element analysis was carried out to simulate the tested stud columns. The finite element analysis results showed good agreement with the experimental results about buckling modes and ultimate strengths, which indicated that it is feasible to analyze this kind of stud columns with holes by using the finite element method (FEM). Finally, the proposed effective width method was used to predict the ultimate strengths of stud columns with holes based on the proposed buckling coefficient formulas of the plate with holes. The comparison between calculated results and test and finite element results indicated that the proposed EWM is feasible and accurate to predict the ultimate strength of the CFS lipped channel stud columns with holes in the web.
机译:本文的目的是考察屈曲性能和呈现的极限强度的设计方法中的基本有效宽度的方法(EWM),用于冷成型钢(CFS)唇形通道螺柱列与在网络的孔。 28柱试验下轴向压缩进行对CFS唇状通道螺柱列在横截面和孔的不同的尺寸圆形和矩形孔。所测试的螺柱列包括4名成员无孔,与圆形孔12组的成员,并且与矩形孔12组的成员。试验结果表明,孔柱列是由局部弯曲或局部屈曲和畸变屈曲的相互作用决定。与无孔螺柱列相比,小孔对测试样品的极限强度有轻微的影响,和大孔对测试样品的极限强度有很大的影响。试样的负载能力与孔的尺寸的增加而降低。然后,有限元分析进行模拟测试螺柱列。有限元分析结果表明,随着关于屈曲模式和极限强度,这表明它是可行的,通过使用有限元法(FEM)分析这种具有孔螺柱列的实验结果吻合良好。最后,使用所提出的有效宽度的方法与基于与孔板的所提出的压曲系数公式孔来预测螺柱列的最终强度。计算结果和测试和有限元结果之间的比较表明,所提出的EWM是可行的和准确的与幅材的孔来预测CFS唇通道螺柱列的最终强度。

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