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Experimental study of the cross-sectional capacity of cold-formed steel built-up columns

机译:冷成型钢叠层横截面容量的实验研究

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摘要

This paper describes a comprehensive experimental programme in which built-up cold-formed steel stub columns with four different cross-sectional geometries were investigated. Twenty built-up sections were fabricated from individual channels and flat plates with nominal thicknesses ranging from 1.2 mm to 2.4 mm and assembled with either bolts or self-drilling screws. The connector spacing was varied among specimens of the same geometry in order to study its effect. The built-up columns were tested between fixed boundary conditions and the load was transmitted through end plates which were attached to the columns with an epoxy resin. Tensile coupons were taken from the corners and flat portions of the constituent sections in order to determine their material properties, while detailed measurements of the geometric imperfections of each specimen were also performed using a laser displacement sensor. The experiments revealed a significant amount of restraint and interaction between the individual components of the columns while buckling, with the connector spacing having a pronounced effect on the observed buckling modes. However, the ultimate cross-sectional capacity was seen to be much less dependent on the connector spacing within the considered range of spacings.
机译:本文介绍了一种综合实验计划,其中研究了具有四种不同横截面几何形状的内置的冷成型钢带柱。 20个内置部分由各个通道和扁平板制造,标称厚度范围为1.2毫米至2.4毫米,并用螺栓或自钻螺钉组装。连接器间距在同一几何形状的标本中变化,以便研究其效果。在固定边界条件之间测试了内置柱,并且载荷通过端板传递,该端板连接到具有环氧树脂的柱上。从组成部分的拐角和平坦部分取出拉伸试样以确定它们的材料特性,同时还使用激光位移传感器进行每个样本的几何缺陷的详细测量。实验揭示了柱子的各个组分之间的大量约束和相互作用,同时弯曲,连接器间隔对观察到的屈曲模式具有明显的影响。然而,最终的横截面容量被认为远不依赖于所考虑的间距范围内的连接器间隔。

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