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Numerical investigation and direct strength design of cold-formed steel lipped channel columns experiencing local-distortional-global interaction

机译:局部-变形-整体相互作用的冷弯型钢唇形槽柱的数值研究与直接强度设计

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This paper reports the results of a numerical investigation concerning the relevance and Direct Strength Method (DSM) prediction of the ultimate strength erosion caused by local-distortional-global (LDG) interaction in cold-formed steel fixed-ended lipped channel columns. The geometries of the columns analysed (cross-section dimensions and lengths) were carefully selected to ensure that the three competing critical buckling loads are not more than 20% apart, thus guaranteeing a fairly high level of LOG coupling, and ordered in all the various possible sequences. In order to cover a wide slenderness range, several yield stresses are considered, falling below, in-between and above the lowest and highest critical buckling stresses. After providing a brief description of the column selection procedure, which is based on buckling analyses performed with Generalised Beam Theory (GBT), the methodology adopted to identify the most detrimental initial geometrical imperfection shape (in the sense it minimises the column strength) is addressed - it employs Koiter's asymptotic method along with a Monte Carlo simulation. Then, columns containing those initial geometrical imperfections are compressed up to failure, by means of ABAQUS shell finite element analyses (SFEA), making it possible to acquire in-depth knowledge on the behaviour of lipped channel columns undergoing LDG interaction and gather considerable failure load data. Finally, the last part of the paper is devoted to the DSM prediction of those failure loads and uses the obtained "data bank' to assess whether the available design approaches are able to handle adequately the ultimate strength erosion caused by the triple interaction phenomenon under investigation - if this is not the case, new design curves must be developed. (C) 2016 Elsevier Ltd All rights reserved.
机译:本文报告了一项有关相关性和直接强度方法(DSM)预测的数值研究结果,该方法预测了冷弯型钢固定端唇形导槽柱中局部-整体-整体(LDG)相互作用引起的极限强度腐蚀。仔细选择了被分析柱的几何形状(横截面尺寸和长度),以确保三个相互竞争的临界屈曲载荷相距不超过20%,从而保证了相当高的LOG耦合水平,并按各种顺序排列可能的顺序。为了覆盖较宽的细长范围,考虑了几个屈服应力,它们分别在最低和最高临界屈曲应力之下,之中和之上。在简要介绍了基于通用梁理论(GBT)进行屈曲分析的柱选择程序后,解决了用于识别最有害的初始几何缺陷形状(从某种意义上说,它使柱强度最小化)的方法。 -它采用了Koiter的渐近方法以及Monte Carlo模拟。然后,通过ABAQUS壳有限元分析(SFEA),将包含那些初始几何缺陷的柱压缩到破坏,从而有可能获得有关经历LDG相互作用的唇形通道柱行为的深入了解,并收集相当大的破坏载荷数据。最后,本文的最后一部分专门针对那些破坏载荷的DSM预测,并使用获得的“数据库”来评估可用的设计方法是否能够充分处理受调查的三重相互作用现象引起的极限强度侵蚀。 -如果不是这种情况,则必须开发新的设计曲线(C)2016 Elsevier Ltd保留所有权利。

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