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Behaviour and design of cold-formed steel built-up section beams with different screw arrangements

机译:不同螺杆布置的冷弯型钢组合截面梁的性能与设计

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摘要

An experimental and numerical investigation of cold-formed steel built-up beams with different screw arrangements is presented in this paper. A total of 35 beams were tested under four-point bending with different screw arrangements in the moment span. The built-up sections were assembled using self-tapping screws from either two lipped channels connected back-to-back at the web to form an open section or two plain channels connected face-to-face at the flanges to form a closed section. Finite element (FE) models have been developed and validated against the test results for the built-up open section beams and built-up closed section beams, respectively. It is shown that the FE models can accurately predict the behaviour of cold-formed steel built-up beams with different screw arrangements. A parametric study on built-up beams with larger span and various screw spacing was further carried out using the verified FE models. The test and numerical results were compared with the design strengths predicted by the direct strength method (DSM) for cold-formed steel structures, with contingent considerations of the screws when determining the elastic buckling moments in the finite strip analysis. A reliability analysis was performed to evaluate the reliability of the current DSM equations. It is shown that the current DSM equations can predict the design strengths of built-up open section beams well in this study, with the assumption that the strength of the built-up section is the sum of two component profiles. However, the design equations for local buckling strength are generally conservative for the built-up closed section beams failed by local buckling. Meanwhile, the design equations for lateral-torsional buckling (LTB) strength cannot be directly used for the built-up closed section beams with relatively large screw spacing that failed by LTB with cross section distortion or separation of two component channels. It should be noted that LTB mode with cross section distortion was found in built-up closed section beams with large screw spacing. A modified design rule based on DSM is then proposed, which is shown to improve the accuracy of the predicted strengths. Moreover, the maximum longitudinal screw spacing for built-up closed section beams was also recommended for design practice.
机译:本文给出了不同螺钉布置的冷弯型钢组合梁的试验和数值研究。在力矩跨度下使用不同的螺钉布置在四点弯曲下总共测试了35个梁。使用自攻螺钉从两个腹板在腹板上以背对背连接的形式形成一个开放的部分,或者在法兰上面对面地连接以形成一个封闭的部分的两个简单的通道,使用自攻螺钉组装这些组合部分。分别针对组合式开放式截面梁和组合式封闭式截面梁的测试结果,开发并验证了有限元(FE)模型。结果表明,有限元模型可以准确预测具有不同螺钉布置的冷弯型钢组合梁的性能。使用已验证的有限元模型,对具有较大跨度和不同螺杆间距的组合梁进行了参数研究。将试验和数值结果与通过直接强度法(DSM)预测的冷弯钢结构的设计强度进行了比较,并在有限条分析中确定弹性屈曲力矩时考虑了螺钉的可能性。进行了可靠性分析,以评估当前DSM方程的可靠性。结果表明,当前的DSM方程可以很好地预测组合式开放截面梁的设计强度,假设组合式截面梁的强度是两个分量轮廓的总和。但是,对于因局部屈曲而失效的组合封闭截面梁,局部屈曲强度的设计公式通常较为保守。同时,横向扭转屈曲(LTB)强度的设计方程式不能直接用于螺钉间距相对较大的封闭截面截面梁,而这些截面截面截面因截面变形或两个分量通道的分离而导致LTB失效。应当指出的是,在具有大螺钉间距的组合式封闭截面梁中发现了具有截面变形的LTB模式。然后提出了一种基于DSM的改进设计规则,该规则表明可以提高预测强度的准确性。此外,还建议在设计实践中使用内置封闭截面梁的最大纵向螺钉间距。

著录项

  • 来源
    《Thin-Walled Structures》 |2018年第10期|16-32|共17页
  • 作者

    Wang Liping; Young Ben;

  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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