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Behaviour of cold-formed steel lipped channel sections subject to eccentric axial compression

机译:冷成型钢锁定通道部分的行为受到偏心轴向压缩

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The use of light-gauge steel framed (LSF) wall systems in low-and mid-rise buildings has increased due to the fast and clean construction and robust structural performance. Cold-formed steel studs used as the primary load-bearing component in LSF walls are often subjected to combined axial compression and bending actions caused by loading eccentricity. Research on the effects of loading eccentricity on the compression capacity has been limited while the currently used AS/NZS 4600 and AISI-S100 DSM design guidelines significantly underes-timate the load bearing capacities. In this study, 35 lipped channel columns of 0.6 to 1.5 m lengths were tested under concentric and varying levels of eccentric axial compression loading and the resulting load versus axial shortening curves and failure modes were analysed. Non-linear finite element models of tested columns were developed and validated using the test results. Comparison of the ultimate capacities obtained from the tests and finite element analyses against those predicted by the DSM design guidelines showed that the current DSM design guidelines underestimate the capacities whereas a closer agreement was obtained from the im -proved DSM design guidelines proposed in a recent research study. This paper recommends the improved DSM design method to enable economical and safe designs. (c) 2021 Elsevier Ltd. All rights reserved.
机译:由于快速和清洁的结构和稳健的结构性能,使用灯具钢框架(LSF)墙壁系统的使用增加了增加。用作LSF墙壁中的初级承载部件的冷成型钢螺柱通常经受由装载偏心引起的轴向压缩和弯曲动作。对压缩容量的加载偏心效应的研究受到限制,而目前使用的AS / NZS 4600和AISI-S100 DSM设计指南显着削弱了载荷承载能力。在该研究中,在同心的和不同偏心轴压加载的同心和变化水平的偏心轴压载荷和轴向缩短曲线和失效模式下进行35个唇通道柱。使用测试结果开发并验证了测试列的非线性有限元模型。从测试和有限元分析中获得的最终能力的比较对DSM设计指南预测的那些,表明当前的DSM设计指南低估了容量,而仔细协议是从最近研究中提出的IM-Proved DSM设计指南获取学习。本文建议改进的DSM设计方法以实现经济和安全的设计。 (c)2021 elestvier有限公司保留所有权利。

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