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首页> 外文期刊>Thin-Walled Structures >Distortional strength of end-bolted CFS lipped channel columns: Experimental investigation, numerical simulations and DSM design
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Distortional strength of end-bolted CFS lipped channel columns: Experimental investigation, numerical simulations and DSM design

机译:端部螺栓连接的CFS通道槽柱的变形强度:实验研究,数值模拟和DSM设计

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摘要

This paper reports the results of an experimental investigation and numerical simulations concerning the influence of bolted end support conditions on the failure loads of cold-formed steel lipped channel columns buckling and failing in distortional modes, as well as on their prediction by means of the Direct Strength Method (DSM). The end supports consist of pairs of cylindrical high-strength bolts with hexagonal heads and nuts, which are inserted in standard-sized holes located at the intersections of the cross-section flanges with the minor principal centroidal axis (parallel to the web). After selecting the column geometries (cross-section dimensions and lengths) and yield stresses, the test set-up and procedure are described in detail, and the experimental results obtained are presented and discussed. Such results consist of initial imperfection measurements, equilibrium paths relating the applied load to key column displacements, deformed configurations (including the collapse mode) and failure loads. Next, those same experimental results are used to validate a previously developed shell finite model, which is subsequently employed to obtain additional numerical failure load data concerning the end-bolted columns under scrutiny. Then, attention is turned to assessing the merits of the available DSM column distortional design curves. Because it is concluded that these design curves clearly overestimate the failure load data obtained, new/modified strength curves are preliminarily proposed and shown to considerably improve the prediction quality (safety and reliability) of the end-bolted column failure loads, thus providing motivation and encouragement to continue the search for an efficient DSM-based design approach for end-bolted columns failing in distortional modes.
机译:本文报道了有关螺栓端部支撑条件对冷弯型钢唇形槽钢屈曲和破坏模式下破坏载荷的影响的实验研究和数值模拟的结果,以及它们通过直接应力预测的结果。强度法(DSM)。端部支撑件由成对的带有六角头和螺母的圆柱形高强度螺栓组成,这些螺栓插入到标准尺寸的孔中,该孔位于横截面法兰与次要重心轴(平行于腹板)的相交处。选择了色谱柱的几何形状(横截面尺寸和长度)和屈服应力后,详细描述了测试装置和步骤,并介绍和讨论了获得的实验结果。这样的结果包括初始缺陷测量,将施加载荷与关键柱位移相关的平衡路径,变形构型(包括塌陷模式)和破坏载荷。接下来,将这些相同的实验结果用于验证先前开发的壳体有限模型,随后将其用于获取有关受审查的端部螺栓柱的附加数值破坏载荷数据。然后,注意力转向评估可用的DSM色谱柱变形设计曲线的优点。由于可以得出结论,这些设计曲线明显高估了获得的失效载荷数据,因此初步提出了新的/修改后的强度曲线,并显示出该曲线可以显着提高端部螺栓失效载荷的预测质量(安全性和可靠性),从而提供了动力和动力。鼓励继续寻找一种有效的基于DSM的设计方法,以解决在畸变模式下失效的端螺栓式色谱柱的问题。

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