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Structural behaviour of cold-formed stainless steel tubular members

机译:冷成型不锈钢管件的结构行为

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摘要

This thesis examines the behaviour of cold-formed stainless steel tubular structural members, with an emphasis on ferritic stainless steels. Owing to the high comparative expense of stainless steel relative to traditional carbon steel, this study aims to identify and develop means of utilising the material more efficiently. A comprehensive material test programme was carried out as part of an extensive study into the prediction of strength enhancements in cold-formed structural sections that arise during production. Material tests on a total of 51 flat coupons and 28 corner coupons, extracted from a total of 18 cross-sections formed from a wide range of materials, were performed. A new, simple and universal predictive model for harnessing the cold-formed induced strength enhancements was developed which offers, on average, 19% and 36% strength enhancements for the cross-section flat faces and corner regions, respectively, relative to the strength of the unformed material. Ferritic stainless steels, having no or very low nickel content, offer a more viable alternative for structural applications to the more commonly used austenitic stainless steels, reducing both the level and variability of the initial material cost. There is currently limited information available on the structural performance of this type of stainless steel. Therefore, to overcome this limitation, a series of material, cross-section and member tests have been performed on two ferritic grades - EN 1.4003 and EN 1.4509. The experimental results were used to assess the applicability of the current codified design provisions to ferritic stainless steel structural components. Moreover, the elevated temperature performance of ferritic stainless steels, covering the material response and the flexural buckling behaviour, was investigated through analysis of experimental and numerical results, leading to proposals for suitable design recommendations. Finally, simplifications and refinements to the recently developed continuous strength method (CSM) were made. Comparison of the predicted capacities with over 140 collected test results on stainless steel stub columns and cross-sections in bending shows that the CSM offers improved accuracy and reduced scatter relative to the current design methods. The reliability of the approach has been demonstrated by statistical analyses, enabling its use in structural design standards.
机译:本文研究了冷弯不锈钢管状结构构件的性能,重点是铁素体不锈钢。由于不锈钢相对于传统碳钢的比较费用较高,因此本研究旨在确定和开发更有效利用材料的方法。作为全面研究的一部分,我们进行了全面的材料测试计划,以预测生产过程中出现的冷弯结构截面的强度增强。对总共51个平面试样和28个角试样进行了材料测试,这些试样从由多种材料形成的18个横截面中提取。开发了一种新的,简单且通用的预测模型,可利用冷弯引起的强度增强,相对于钢带的强度,横截面平面和拐角区域的强度平均分别提高19%和36%。未成型的材料。不含镍或镍含量极低的铁素体不锈钢在结构应用方面提供了比更常用的奥氏体不锈钢更可行的替代选择,从而降低了初始材料成本的水平和可变性。目前,有关这种不锈钢的结构性能的信息有限。因此,为克​​服此限制,已经对两种铁素体等级EN 1.4003和EN 1.4509进行了一系列材料,横截面和构件测试。实验结果被用来评估当前编纂的设计规定对铁素体不锈钢结构部件的适用性。此外,通过分析实验和数值结果,研究了铁素体不锈钢的高温性能,涵盖了材料响应和挠曲屈曲行为,从而提出了适合的设计建议。最后,对最近开发的连续强度法(CSM)进行了简化和完善。将预测的容量与在弯曲的不锈钢短管柱和横截面上收集的140多个测试结果进行比较后发现,相对于当前的设计方法,CSM可以提高准确性,并减少分散。通过统计分析证明了该方法的可靠性,使其能够用于结构设计标准中。

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    Afshan Sheida;

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  • 年度 2014
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