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Development of a simplified design method to predict the fire rating of LSF walls

机译:开发一种简化的设计方法来预测LSF墙的防火等级

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摘要

Recent fire research into the behaviour of light gauge steel frame (LSF) wall systems has devel-oped fire design rules based on Australian and European cold-formed steel design standards, AS/NZS 4600 and Eurocode 3 Part 1.3. However, these design rules are complex since the LSF wall studs are subjected to non-uniform elevated temperature distributions when the walls are exposed to fire from one side. Therefore this paper proposes an alternative design method for routine predictions of fire resistance rating of LSF walls. In this method, suitable equations are recommended first to predict the idealised stud time-temperature pro-files of eight different LSF wall configurations subject to standard fire conditions based on full scale fire test results. A new set of equations was then proposed to find the critical hot flange (failure) temperature for a giv-en load ratio for the same LSF wall configurations with varying steel grades and thickness. These equations were developed based on detailed finite element analyses that predicted the axial compression capacities and failure times of LSF wall studs subject to non-uniform temperature distributions with varying steel grades and thicknesses. This paper proposes a simple design method in which the two sets of equations developed for time-temperature profiles and critical hot flange temperatures are used to find the failure times of LSF walls. The proposed method was verified by comparing its predictions with the results from full scale fire tests and finite element analyses. This paper presents the details of this study including the finite element models of LSF wall studs, the results from relevant fire tests and finite element analyses, and the proposed equations.
机译:最近对轻型钢框架(LSF)墙系统的性能进行的火灾研究已经制定了基于澳大利亚和欧洲冷弯型钢设计标准,AS / NZS 4600和Eurocode 3 Part 1.3的火灾设计规则。但是,这些设计规则很复杂,因为当墙壁从一侧着火时,LSF墙壁螺栓会经受非均匀的高温分布。因此,本文提出了一种用于常规预测LSF墙耐火等级的替代设计方法。在这种方法中,首先建议使用适当的方程式,根据标准火灾条件,根据标准火灾条件,预测八种不同LSF墙配置的理想立柱时间-温度曲线。然后,提出了一组新的方程式,以针对相同的LSF壁构造(具有不同的钢种和厚度),求出给定载荷比下的临界热法兰(失效)温度。这些方程式是根据详细的有限元分析得出的,这些分析预测了在钢种和厚度变化的温度分布不均匀的情况下,LSF墙钉的轴向压缩能力和破坏时间。本文提出了一种简单的设计方法,其中使用针对时间-温度曲线和临界热法兰温度开发的两组方程式来查找LSF墙的失效时间。通过将其预测结果与全面火灾测试和有限元分析的结果进行比较,验证了该方法的有效性。本文介绍了此项研究的详细信息,包括LSF墙钉的有限元模型,相关耐火试验和有限元分析的结果以及所提出的方程式。

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