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Spherically-Hinged Short-to-intermediate Angle Columns: Stability, Non-Linear Behavior and DSM Design

机译:球形铰链短至中间角柱:稳定性,非线性行为和DSM设计

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This work reports a numerical investigation on the buckling, post-buckling (elastic and elastic-plastic), strength and design of spherically-hinged short-to-intermediate equal-leg angle columns. It extends the scope of similar studies recently carried out by the authors for cold-formed and hot-rolled (lower leg width-to-thickness ratios) steel fixed and pin-ended angles with the same characteristics. After briefly reviewing the most relevant findings unveiled in the above studies, the paper addresses the buckling behavior of spherically-hinged columns - the results presented and discussed, which include the selection of the column geometries to be considered, are obtained by means of Generalized Beam Theory (GBT). Then, the post-buckling behavior and strength of columns containing initial geometrical imperfections and residual stresses (special attention is paid to modeling the latter in hot-rolled angles) is investigated. The results obtained, by means of Abaqus shell finite element analyses, include a parametric study intended to gather failure load data covering a wide slendemess range. The above numerical failure loads are subsequently used to develop, validate and assess the merits of a rational design approach for such members, which is based on the Direct Strength Method (DSM) and adopts ideas and procedures similar to those employed recently by the authors (Dinis & Camotim 2015, 2016a,b, Dinis et al. 2016) in the context of fixed-ended and pin-ended (cylindrical hinges) short-to-intermediate equal-leg angle columns. The need for modifications arises from the change in major-axis flexure support conditions, which influences the column flexural-torsional behavior significantly. It is shown that the proposed/modified DSM strength curves lead to safe and reliable failure load predictions for spherically-hinged short-to-intermediate equal-leg angle columns exhibiting a wide slendemess range, thus extending the scope of the existing rational DSM-based design approach to cover also columns with these end support conditions.
机译:这项工作报告了球形铰接短至中等边角柱的屈曲,后屈曲(弹性和弹塑性),强度和设计的数值研究。它扩展了作者最近针对具有相同特性的冷弯和热轧(较低的腿部宽度与厚度比)钢固定和销端角度进行的类似研究的范围。在简要回顾了上述研究中揭示的最相关的发现之后,本文讨论了球形铰接柱的屈曲行为-提出和讨论的结果(包括要考虑的柱子几何形状的选择)是通过广义梁获得的。理论(GBT)。然后,研究了包含初始几何缺陷和残余应力的柱的屈曲后行为和强度(要特别注意在热轧角度对后者进行建模)。通过Abaqus壳有限元分析获得的结果包括一项旨在收集覆盖广泛slendemess范围的失效载荷数据的参数研究。上述数值破坏载荷随后被用于开发,验证和评估此类构件的合理设计方法的优点,该方法基于直接强度方法(DSM),并采用类似于作者最近采用的思想和程序( Dinis&Camotim 2015,2016a,b,Dinis et al.2016)在固定端和销端(圆柱铰链)短至中间等边角柱的情况下。修改的需要来自主轴弯曲支撑条件的变化,这会显着影响柱的弯曲扭转行为。结果表明,所提出的/修正的DSM强度曲线可以为球形铰链短至中等等肢角柱表现出较宽的展宽范围,从而提供安全可靠的失效载荷预测,从而扩展了现有基于合理的DSM的范围设计方法还可以覆盖具有这些最终支撑条件的色谱柱。

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