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Structural behavior of intermediate length cold-formed steel rack columns with C-stitches

机译:用C尺寸的中间长度冷成型钢架柱的结构行为

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This article presents an experimental and numerical investigation on the strength and performance of intermediate length rack column sections with C-stitches under axial compression. The test program consisted of 10 axial concentric compression tests on columns with and without C-stitches under pin end conditions for two different geometric lengths. Finite element (FE) models were developed using commercial FE package ABAQUS considering material and geometric nonlinearities as well as initial geometric imperfections. The elastic buckling properties of the section were calculated using readily available linear elastic buckling analysis tools based on Generalized Beam Theory (GBT) and Finite Strip Method (FSM). Obtained FE results were compared with those obtained experimentally, and once verified the developed FE modeling technique was used to carry out a parametric study to examine changes in structural response due to variations in length, depth and spacing of C-stitches. Observed influences of C-stitches on the behavior and resistance of the considered columns were carefully analyzed, and key design aspects are presented herein.
机译:本文介绍了轴向压缩下用C缝线的中间长度架柱截面的强度和性能的实验性和数值研究。测试程序由10个轴向同心压缩试验组成,在柱内条件下的柱和没有C缝线,用于两个不同的几何长度。有限元(FE)模型是使用商业FE包ABAQUS开发的,考虑材料和几何非线性以及初始几何不完美。基于广义光束理论(GBT)和有限带法(FSM)的易用线性弹性屈曲分析工具计算该部分的弹性屈曲性能。将获得的Fe结果与实验获得的那些进行比较,一旦验证,使用开发的FE建模技术用于进行参数研究,以检查由于C迹的长度,深度和间距的变化而导致结构响应的变化。观察到C缝线对所考虑的柱的行为和抗性的影响被仔细分析,并且本文提出了关键设计方面。

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