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On the strength and DSM design of cold-formed steel web/flange-stiffened lipped channel columns buckling and failing in distortional modes

机译:冷弯型钢腹板/加筋唇形槽形梁屈曲破坏的强度及DSM设计

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Results recently reported by Kumar and Kalyanaraman [1] suggest that the presence of web and flange V-shaped intermediate stiffeners in cold-formed steel lipped channel columns may alter considerably their distortional buckling, post-buckling and collapse behaviours. The objective of this work is to assess the validity of this assertion, constituting a significant break from the existing knowledge, which is widely accepted by the technical/scientific community working with cold-formed steel structures. In particular, it may even imply that the application of the Direct Strength Method (DSM) to web/flange-stiffened lipped channel columns requires the consideration of a different (higher) distortional strength curve. In order to carry out the above assessment, this work reports a thorough numerical investigation aimed at studying the peculiarities of the distortional buckling, post-buckling and collapse behaviours of (web/flange) stiffened cold-formed steel lipped channel columns. The first step consists of selecting column geometries associated with "pure" distortional buckling and failure modes, which is ensured by having local and global critical buckling loads much higher than their distortional counterparts - this task is carried out by means of sequences of "trial-and-error" buckling analyses, performed with the GBTUL code. Then, it is necessary to address the mechanical characterisation of the distortional critical buckling modes in the stiffened columns, a task much more involved than in plain lipped channel columns (and by no means trivial). This is done through the in-depth inspection of the results provided by the aforementioned GBT buckling analyses. Next, an ANSYS shell finite element model is employed to perform geometrically and materially non-linear analyses of the selected stiffened lipped channel columns. The numerical results obtained (equilibrium paths, failure loads and deformed configurations) are presented and discussed, in order to assess the influence of the V-shaped intermediate stiffeners. Finally, on the basis of the ultimate strength data obtained and also the experimental and numerical failure loads reported in [1], the paper presents some considerations concerning the application of the current DSM strength curve to the design of (web/flange) stiffened lipped channel columns failing in distortional modes - in particular, some conclusions are drawn concerning the need to develop a new DSM distortional design curve to handle columns with this cross-section shape. (C) 2016 Elsevier Ltd. All rights reserved.
机译:Kumar和Kalyanaraman [1]最近报道的结果表明,在冷弯型钢唇形导槽中,腹板和V型凸缘中间加强筋的存在可能会大大改变其变形屈曲,后屈曲和塌陷行为。这项工作的目的是评估该断言的有效性,这是对现有知识的重大突破,而现有知识已被从事冷弯钢结构的技术/科学界广泛接受。尤其是,它甚至可能意味着将直接强度方法(DSM)应用于腹板/法兰加强的唇形通道柱时,需要考虑其他(较高)变形强度曲线。为了进行上述评估,这项工作报告了一个详尽的数值研究,旨在研究(腹板/法兰)加劲冷弯钢制弯型槽形柱的畸变屈曲,后屈曲和塌陷行为的特点。第一步包括选择与“纯”变形屈曲和破坏模式相关的列几何形状,这是通过使局部和全局临界屈曲载荷远高于其变形对应项来确保的-此任务通过“试验-和错误”屈曲分析,使用GBTUL代码执行。然后,有必要解决加劲柱中变形临界屈曲模式的机械表征问题,这是比普通唇形导槽柱要复杂得多的任务(绝不是琐碎的)。这是通过对上述GBT屈曲分析提供的结果进行深入检查来完成的。接下来,采用ANSYS壳有限元模型对选定的加劲唇形通道柱进行几何和材料非线性分析。提出并讨论了获得的数值结果(平衡路径,破坏载荷和变形构型),以评估V型中间加劲肋的影响。最后,基于获得的极限强度数据以及[1]中报告的实验和数值破坏载荷,本文提出了有关将当前DSM强度曲线应用于(腹板/法兰)加劲唇板设计的一些考虑因素。通道柱在变形模式下失效-特别是,需要得出一些结论,即需要开发一条新的DSM变形设计曲线来处理具有这种横截面形状的柱。 (C)2016 Elsevier Ltd.保留所有权利。

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