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Structural fire design of SHS, RHS and CHS high strength steel columns

机译:SHS,RHS和CHS高强度钢柱的结构火灾设计

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摘要

Despite substantial progress in recent years to improve the design guidance for high strength steel (HSS) structural elements, this has mainly been for ambient conditions with their fire response still in need of further research. Accordingly, this paper reports on an investigation into the structural performance of unprotected HSS hollow section columns in fire. Finite element models of columns made from square, circular and rectangular hollow sections are developed and are validated against test data at ambient and elevated temperature. The validated models are employed to perform parametric studies to assess the influence of a range of variables such as the grades of HSS, levels of temperature exposure and cross-sectional geometry. The structural fire design resistance method for a column given in the Eurocode is assessed based on the FE results. Consequently, new buckling curves are proposed, which provide a more accurate prediction of the real capacity and reliability analysis is also performed on the new proposed design formulations.
机译:尽管近年来提高了高强度钢(HSS)结构元素的设计指导,但这主要是环境条件,其火灾反应仍需要进一步研究。因此,本文报告了对无保护的HSS中空柱的结构性能的调查。开发了由正方形,圆形和矩形中空部分制成的柱的有限元模型,并在环境温度下验证测试数据和升高的温度。经过验证的模型用于执行参数研究,以评估一系列变量的影响,例如HSS等级,温度曝光水平和横截面几何形状。根据FE结果评估欧洲码中给出的柱的结构火灾设计电阻方法。因此,提出了新的屈曲曲线,其提供了对现实容量和可靠性分析的更准确的预测,还对新的设计配方进行了可靠性分析。

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