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Numerical Investigation of Cold-Formed Steel Top-Hat Purlins

机译:冷成型钢顶帽紫林的数值研究

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This paper considers the use of cold-formed steel top-hat sections for purlins as an alternative to conventional zed-sections. The use of such top-hat sections may be viable for use in cold-formed steel portal framing systems, where both the frame spacing and purlin span may be smaller than in conventional hot-rolled steel portal frames. Furthermore, such sections are torsionally stiffer than zed-sections, and so have a greater resistance to lateral-torsional buckling. They also do not require the installation of anti-sag rods. The paper describes non-linear elasto plastic finite element analyses conducted on top-hat sections. The results of twenty-seven tests on four different top-hat sections are presented. Good agreement between experimental and finite element results is shown. The finite element model is then used for a parametric study to investigate the effect of different thicknesses and steel grades. Design recommendations are provided in the form of charts that can be used to assist designers when deciding which geometry of top-hat section to consider for further development. The use of the finite element method in this way exploits modern computational techniques for an otherwise difficult structural design problem and reduces the need for an expensive and time consuming full laboratory study, whilst maintaining realistic and safe coverage of the important structural design issues.
机译:本文考虑使用的冷成型钢顶帽部分用于檩条以替代常规捷思截面。使用这种顶帽部可以是可行的冷成型钢门户框架系统,其中,所述帧间隔和檩跨度两者都可以是比传统的热轧钢板门户帧小的用途。此外,这样的部分是扭转比捷思截面更硬,因此不得不横向扭转屈曲一个更大的阻力。他们也不需要防流挂杆的安装。本文介绍的非线性弹塑性有限元分析对顶帽部分进行。的27测试的四个不同的顶帽部分的结果。实验和有限元结果之间具有良好的协议被示出。然后,有限元模型被用于参数研究以调查不同的厚度和钢种的影响。在可用于决定考虑进一步发展这顶帽子部分的几何体时,协助设计师图表的形式提供设计建议。以这种方式使用有限元方法的利用现代计算技术的否则难以结构设计问题,并降低了对昂贵和费时的全实验室研究的需要,同时保持的重要的结构设计问题的现实和安全涵盖。

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