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Fire performance and design of load bearing light gauge steel frame wall systems exposed to realistic design fires

机译:暴露于现实设计火灾中的轻型钢框架墙系统的耐火性能和设计

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摘要

This paper presents the fire performance results of light gauge steel frame (LSF) walls lined with single and double plasterboards, and externally insulated with rock fibre insulation as obtained using a finite element analysis based parametric study. A validated numerical model was used to study the influence of various fire curves developed for a range of compartment characteristics. Data from the parametric study was utilized to develop a simplified method to predict the fire resistance ratings of LSF walls exposed to realistic design fire curves. Further, this paper also presents the details of suitable fire design rules based on current cold-formed steel standards and the modifications proposed by previous researchers. Of these the recently developed design rules by Gunalan and Mahendran [1] were investigated to determine their applicability to predict the axial compression strengths and fire resistance ratings (FRR) of LSF walls exposed to realistic design fires. Finally, the stud failure times obtained from fire design rules and finite element studies were compared for LSF walls lined with single and double plasterboards, and externally insulated with rock fibres under realistic design fire curves.
机译:本文介绍了使用基于有限元分析的参数研究获得的轻型钢框架(LSF)墙的防火性能结果,该墙内衬有单层和双层石膏板,外层采用岩纤维绝缘材料。经过验证的数值模型用于研究针对一系列车厢特性而开发的各种着火曲线的影响。参数研究的数据用于开发一种简化的方法,以预测暴露于实际设计火灾曲线的LSF墙的耐火等级。此外,本文还根据当前的冷弯钢标准以及先前研究人员提出的修改内容,提出了适合的防火设计规则的详细信息。在这些最新研究中,研究了Gunalan和Mahendran [1]制定的设计规则,以确定它们可用于预测暴露于现实设计火灾中的LSF墙的轴向抗压强度和耐火等级(FRR)。最后,比较了从防火设计规则和有限元研究获得的双头螺栓破坏时间,这些壁厚是在现实设计防火曲线下,内衬单层和双层石膏板且外部用岩石纤维绝缘的LSF墙。

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