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Short-to-intermediate slender pin-ended cold-formed steel equal-leg angle columns: Experimental investigation, numerical simulations and DSM design

机译:短至中等的细长销端冷弯钢等腿角柱:实验研究,数值模拟和DSM设计

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摘要

Angles exhibit a complex structural behaviour, responsible for the fact that, in the current North American Specification for Cold-Formed Steel Structures, short-to-intermediate equal-leg angle columns are (i) not yet pre-qualified for the Direct Strength Method (DSM) design and (ii) excluded from the application of the LFRD resistance factor phi = 0.85, valid for all other cold-formed steel compression members. Recently, the specific behavioural features exhibited by the above angle columns were incorporated into the proposal of a novel DSM-based design approach, for both fixed-ended and pin-ended columns, and it was shown that this added rationality goes along with quite accurate and reliable failure load predictions. However, the investigation leading to this design proposal also unveiled that there are no available experimental failure loads of slender pin-ended columns with intermediate-to-high slenderness values, which implied that the design procedure was validated for such columns exclusively on the basis of numerical failure loads. The research work reported in this paper provides a contribution towards filling this gap, since it mainly consists of an experimental study, carried out at the Federal University of Rio de Janeiro, on the behaviour and collapse of short-to-intermediate slender pin-ended cold-formed steel equal-leg angle columns. After addressing the selection of the columns to be tested, the experimental set-up and test procedure are described in detail and the results obtained are presented and discussed. Such results involve (i) initial imperfection measurements, (ii) equilibrium paths relating the applied load to key column displacements, (iii) deformed configurations (including the collapse mode) and (iv) failure loads. Next, those same experimental results are used to validate a shell finite model previously developed by the authors, which is subsequently employed to obtain additional numerical failure load data concerning the pin-ended angle columns under scrutiny. Then, attention is turned to assessing the merits of the novel design approach. The comparison between the experimental and numerical values obtained in this work and their estimates provided by the design equations shows a very good correlation, perfectly in line with that observed in the recent studies available in the literature - this means that the validation and calibration of the above design approach may be deemed (successfully) completed. Finally, the paper closes with the presentation and assessment of small alterations to the existing design expressions, aimed at improving their accuracy and rationality, thus paving the way towards codification in the near future. (C) 2016 Elsevier Ltd. All rights reserved.
机译:角钢具有复杂的结构特性,这是因为在当前的《北美冷弯钢结构规范》中,中短等边角钢短柱(i)尚未通过直接强度法的资格鉴定(DSM)设计和(ii)从LFRD抵抗系数phi = 0.85的应用中排除,这对所有其他冷弯型钢压缩构件均有效。最近,上述角柱所表现出的特定行为特征已被纳入针对固定端柱和销端柱的基于DSM的新型设计方法的提案中,并且表明这种附加的合理性与相当准确可靠的故障负荷预测。但是,导致提出该设计建议的调查还显示,没有任何实验结果表明,细长的端部固定柱具有中等至较高的细长值,这表明设计程序仅根据以下条件进行了验证:数值失效载荷。本文报道的研究工作为填补这一空白做出了贡献,因为它主要包括在里约热内卢联邦大学进行的关于短至中等细长针尖的行为和崩溃的实验研究。冷弯等边角钢。在解决了要测试的色谱柱的选择问题之后,将详细介绍实验装置和测试程序,并介绍和讨论获得的结果。这样的结果包括(i)初始缺陷测量,(ii)将施加载荷与关键柱位移相关的平衡路径,(iii)变形构造(包括塌陷模式),以及(iv)破坏载荷。接下来,将那些相同的实验结果用于验证作者先前开发的壳有限模型,然后将其用于获取有关受审查的销端角柱的附加数值破坏载荷数据。然后,注意力转向评估新颖设计方法的优点。在这项工作中获得的实验值和数值之间的比较以及由设计方程式提供的估计值之间显示出很好的相关性,与文献中最新研究中所观察到的相吻合-这意味着对产品的验证和校准以上设计方法可以被视为(成功)完成。最后,本文以对现有设计表达形式的小改动的介绍和评估作为结尾,以提高其准确性和合理性,从而为不久的将来编纂铺平道路。 (C)2016 Elsevier Ltd.保留所有权利。

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