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Shape optimisation of singly-symmetric cold-formed steel purlins

机译:单对称冷成型钢刷素的形状优化

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摘要

This paper presents the results of a study aiming at shape optimising singly-symmetric cold-formed steel purlins. The ?self-shape? optimisation algorithm previously developed, proven to be robust and to converge to known solutions is used for this purpose. Eight optimisation cases are considered, consisting of 1.5 mm and 1.9 mm thick purlins, spanning either 3000 mm or 8000 mm and drawn with either 4, 6 or 8 elements per half cross-section. The aim of the algorithm is to minimise the cross-sectional area subjected to the following constraints: (i) the sections must at least match the second moment of area, and the inward and outward bending capacities of commercial purlins used as reference profiles, (ii) be readily manufacturable using existing roll-forming process, (iii) can be connected similarly to existing purlins by offering vertical and horizontal flat elements long enough and strategically positioned to bolt the purlins to gusset plates and screw the roof to them, respectively, and (iv) have an opening wide enough to run services. The restraints provided by the roof sheeting is considered in the algorithm when calculating the bending capacities. Results show that the algorithm converges to consistent solutions and satisfactory satisfies all constraints, resulting in manufacturable and useable purlins. When compared to the reference purlins, the optimised solutions result in saving up to 6.6% of steel. This cost saving in material is quite significant for a mass-produced product such as purlins. The efficiency of the optimised purlins relative to the reference sections were further validated with FE analysis. The FE analyses confirm that the optimised 1.5 mm thick purlins are superior to the reference section. The optimised purlins may therefore benefit the cold-formed steel industry as they represent more economical solutions without compromising on the usability and performance of the products. However, the FE model shows that the 1.9 mm thick purlins may not have the expected performance and experimental testing is fully validate the optimised sections.
机译:本文介绍了旨在优化单反对称的冷成型钢紫线的研究的结果。 ?自我形状?先前开发的优化算法已被证明是坚固的,并为此目的使用融合到已知解决方案。考虑了八种优化案例,由1.5mm和1.9mm厚的紫蛋白组成,跨越3000mm或8000mm,并用每半横截面为4,6或8个元素绘制。该算法的目的是最小化经受以下约束的横截面积:(i)该部分必须至少匹配第二矩的区域,以及使用作为参考轮廓的商业用品的向内和向外弯曲能力,( ii)通过现有的卷成型工艺易于制造,(iii)可以通过提供垂直和水平的扁平元素来类似地与现有的帽子相似,并且策略性地定位以分别将壁板栓到角腹板并将屋顶拧到它们上, (iv)有足够宽的开放来运行服务。在计算弯曲能力时,在算法中考虑车顶板提供的约束。结果表明,该算法收敛到一致的解决方案和令人满意的满足所有约束,从而产生可制造和可用的纸质。与参考贴片相比,优化的解决方案导致高达6.6%的钢。该材料的这种成本对于紫蛋白等批量生产的产品非常重要。用Fe分析进一步验证了相对于参考部分的优化紫键的效率。 Fe分析证实,优化的1.5毫米厚的紫蛋白优于参考剖面。因此,优化的纸质可以使冷成型钢铁行业有益,因为它们代表更经济的解决方案,而不会影响产品的可用性和性能。然而,Fe模型表明,1.9毫米厚的紫蛋白可能没有预期的性能,实验测试完全验证了优化的部分。

著录项

  • 来源
    《Thin-Walled Structures》 |2021年第4期|107402.1-107402.14|共14页
  • 作者单位

    Griffith Univ Sch Engn & Built Environm Griffith Univ Gold Coast Campus Nathan Qld 4111 Australia;

    Griffith Univ Sch Engn & Built Environm Griffith Univ Gold Coast Campus Nathan Qld 4111 Australia;

    Bond Univ Fac Soc & Design Robina Qld 4226 Australia;

    Griffith Univ Sch Engn & Built Environm Griffith Univ Gold Coast Campus Nathan Qld 4111 Australia;

  • 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

    Cold-formed steel purlins; Manufacturable purlins; Useable purlins; Shape optimisation;

    机译:冷成型钢紫蛋白;可制造的紫蛋白;可用的纸质;形状优化;

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