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Numerical and experimental study on CFS spherically-hinged equal-leg angle columns: stability, strength and DSM design

机译:CFS球形铰接等腿角柱的数值和实验研究:稳定性,强度和DSM设计

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This paper reports a numerical and experimental investigation on the stability/buckling, elastic and elasticplastic behaviour and strength, and Direct Strength Method (DSM) design of cold-formed steel (CFS) spherically-hinged short-to-intermediate equal-leg angle columns. It extends the scope of similar studies recently carried out for CFS fixed-ended and pin-ended (cylindrically-hinged) columns with the same characteristics. Initially, the paper addresses the stability/buckling behaviour of spherically-hinged columns - the results presented and discussed, which include the selection of the column geometries to be analysed (numerically and experimentally), are obtained by means of Generalised Beam Theory (GBT). Then, the post-buckling behaviour and strength of columns containing initial geometrical imperfections is investigated, by means of ANSYS shell finite element analyses, and an experimental study, carried out at UFRJ (Federal University of Rio de Janeiro) and whose results are subsequently used to validate the previously developed numerical model, intended to perform a parametric study to obtain numerical failure load data covering a wide slenderness range for the columns considered. Such results comprise (i) initial imperfection measurements, (ii) load-displacement equilibrium paths, (iii) deformed configurations (including the collapse modes) and (iv) failure loads. The experimental and numerical failure loads obtained are then used to develop, validate and assess the merits of a DSMbased rational design approach that adopts the same concepts and procedures that were previously employed for cylindrically-hinged columns. The need for modifications arises from the new major-axis flexure support conditions, which affect the column flexural-torsional behaviour significantly. It is shown that the proposed/ modified DSM strength curves lead to safe and reliable failure load estimates for spherically-hinged short-tointermediate equal-leg angle columns exhibiting a wide slenderness range, thus making it possible to extend the scope of the existing DSM-based design approach to cover also columns with these end support conditions. The very high prediction quality achieved is attested by the fact that the LRFD resistance factors obtained are well above ?c = 0.85 (value prescribed by the North American Specification for compression members).
机译:本文报告了对稳定性/屈曲,弹性和弹性行为和强度的数值和实验研究,以及冷成型钢(CFS)球形铰接短到中间等腿角柱的直接强度法(DSM)设计。它扩展了最近对CFS固定端和尖端(圆柱铰接)柱进行的类似研究的范围,具有相同的特征。最初,纸张解决了球形铰接柱的稳定性/屈曲行为 - 所呈现和讨论的结果包括选择待分析的柱几何形状(数值和实验),通过广义光束理论(GBT)获得。然后,通过Ansys壳有限元分析研究了含有初始几何缺陷的柱的后屈曲行为和柱的强度,并在UFRJ(联邦里约热内卢大学)进行了实验研究,随后使用了其结果为了验证先前开发的数值模型,旨在执行参数研究以获得覆盖所考虑的列的宽狭窄范围的数值故障负载数据。这种结果包括(i)初始缺陷测量,(ii)负载 - 位移平衡路径,(iii)变形配置(包括崩解模式)和(IV)故障负载。然后使用所获得的实验和数值故障载荷来开发,验证和评估DSM基础合理设计方法的优点,该设计方法采用先前用于圆柱形柱的相同概念和程序。改进的需要从新的主轴弯曲支撑条件中产生,这会显着影响柱弯曲扭转行为。结果表明,所提出的/修改的DSM强度曲线导致用于球形铰接的短托入的等腿角柱的安全可靠的故障负载估计,从而延长现有DSM的范围 - 基于基于的设计方法可以覆盖这些最终支持条件的列。所获得的LRFD电阻因子远远高于ΔC= 0.85(由北美压缩构件规定的价值)所获得的非常高的预测质量。

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