Cold–formed Light gauge Steel Frame (LSF) wall systems are increasingly used in low-rise and multi-storey buildings and hence their fire safety has become important in the design of buildings. A composite LSF wall panel system was developed recently, where a thin insulation was sandwiched between two plasterboards to improve the fire performance of LSF walls. Many experimental and numerical studies have been undertaken to investigate the fire performance of non-load bearing LSF wall under standard conditions. However, only limited research has been undertaken to investigate the fire performance of load bearing LSF walls under standard and realistic design fire conditions. ududTherefore in this research, finite element thermal models of both the conventional load bearing LSF wall panels with cavity insulation and the innovative LSF composite wall panel were developed to simulate their thermal behaviour under standard and realistic design fire conditions. Suitable thermal properties were proposed for plasterboards and insulations based on laboratory tests and available literature. The developed models were then validated by comparing their results with available fire test results of load bearing LSF wall. This paper presents the details of the developed finite element models of load bearing LSF wall panels and the thermal analysis results. It shows that finite element models can be used to simulate the thermal behaviour of load bearing LSF walls with varying configurations of insulations and plasterboards. Failure times of load bearing LSF walls were also predicted based on the results from finite element thermal analyses. Finite element analysis results show that the use of cavity insulation was detrimental to the fire rating of LSF walls while the use of external insulation offered superior thermal protection to them. Effects of realistic design fire conditions are also presented in this paper.
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机译:冷弯轻型钢框架(LSF)墙系统越来越多地用于低层和多层建筑物,因此其防火安全性在建筑物设计中已变得至关重要。最近开发了一种复合LSF墙板系统,其中在两块石膏板之间夹有一层薄的隔热材料,以改善LSF墙的防火性能。已经进行了许多实验和数值研究来研究标准条件下非承重LSF墙的防火性能。但是,仅进行了有限的研究来研究标准和现实设计火灾条件下承重LSF墙的防火性能。 ud ud因此,在这项研究中,开发了传统的带空腔绝缘的LSF承重墙板和创新的LSF复合墙板的有限元热模型,以模拟其在标准和现实设计火灾条件下的热行为。根据实验室测试和现有文献,提出了适用于石膏板和保温材料的热性能。然后,通过将开发的模型结果与可用的LSF承重墙的耐火测试结果进行比较,对模型进行验证。本文详细介绍了已开发的承重LSF墙板的有限元模型和热分析结果。它显示了有限元模型可用于模拟具有不同保温材料和石膏板配置的承重LSF墙的热性能。还基于有限元热分析的结果预测了承重LSF墙的失效时间。有限元分析结果表明,空腔保温层的使用不利于LSF墙的防火等级,而外部保温层的使用则为其提供了出色的热保护。本文还介绍了实际设计火灾条件的影响。
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