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Fire behaviour and resistance of cold-formed steel beams with sigma cross-sections

机译:用Sigma横截面的冷成型钢梁的火灾行为和抗性

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Purpose - Sigma cross-section profiles are often chosen for their lightness and ability to support large spans, offering a favourable bending resistance. However, they are more susceptible to local, distortional and lateral-torsional buckling, as possible failure modes when compared to common I-sections and hollow cross-sections. However, the instability phenomena associated to these members are not completely understood in fire situation. Therefore, the purpose of this study is to analyse the behaviour of beams composed of cold-formed sigma sections at elevated temperatures. Design/methodology/approach - This study presents a numerical analysis, using advanced methods by applying the finite element software SAFIR. A numerical analysis of the behaviour of simply supported cold-formed sigma beams in the case of fire is presented considering different cross-section slenderness values, elevated temperatures, steel grades and bending moment diagrams. Comparisons are made between the obtained numerically ultimate bending capacities and the design bending resistances from Eurocode 3 Part 1-2 rules and its respective French National Annex (FN Annex). Findings - The current design expressions revealed to be over conservative when compared with the obtained numerical results. It was possible to observe that the FN Annex is less conservative than the general prescriptions, the first having a better agreement with the numerical results. Originality/value - Following the previous comparisons, new fire design formulae are analysed. This new methodology, which introduces minimum changes in the existing formulae, provides at the same time safety and accuracy when compared to the numerical results, considering the occurrence of local, distortional and lateral-torsional buckling phenomena in these members at elevated temperatures.
机译:目的 - Sigma横截面型材通常是为了它们的亮度和支持大跨度的能力,提供有利的弯曲性。然而,与普通I段和中空横截面相比,它们更容易受到局部,扭曲和横向扭转屈曲的影响,作为可能的失效模式。然而,与这些成员相关的不稳定性现象在火情况下不完全理解。因此,本研究的目的是分析由升高的温度下由冷成型Σ部分组成的梁的行为。设计/方法/方法 - 本研究通过应用有限元软件Safir,使用先进方法提供了一个数值分析。考虑到火灾情况下,考虑到不同横截面的细长值,升高的温度,钢等级和弯矩图,提出了一种在火灾情况下简单地支撑的冷成型Sigma梁的行为的数值分析。在获得的数值极限弯曲能力和欧洲阵列3第1-2部分规则的设计弯曲电阻之间进行比较及其各自法国国家附件(FN附件)。结果 - 与所得数值结果相比,目前的设计表达显示出在保守派上。有可能观察到FN附件比一般处方更保守,首先与数值结果更好。原创性/值 - 在以前的比较之后,分析了新的火设计公式。这种新方法引入了现有公式中的最小变化,与数值结果相比,以同时提供的时间安全和准确性,考虑到在升高的温度下这些构件中的局部,扭曲和横向屈曲现象的发生。

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