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Finite element modelling of load bearing cold-formed steel wall systems under fire conditions

机译:火灾条件下承重冷弯型钢墙系统的有限元建模

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light Gauge Steel Framing (LSF) walls are made of cold-formed, thin-walled steel lipped channel studs with plasterboard linings on both sides. However, these thin-wailed steel sections heat up quickly and lose their strength under fire conditions despite the protection provided by plasterboards. A new composite wall panel was recently proposed to improve the fire resistance rating of LSF walls, where an insulation layer was used externally between the plasterboards on both sides of the wall frame instead of using it in the cavity. A research study using both fire tests and numerical studies was undertaken to investigate the structural and thermal behaviour of load bearing LSF walls made of both conventional and the new composite panels under standard fire conditions and to determine their fire resistance rating. This paper presents the details of finite element models of LSF wall studs developed to simulate the structural performance of LSF wall panels under standard fire conditions. Finite element analyses were conducted under both steady and transient state conditions using the time-temperature profiles measured during the fire tests. The developed models were validated using the fire test results of 11 LSF wall panels with various plasterboard/insulation configurations and load ratios. They were able to predict the fire resistance rating within 5 min. The use of accurate numerical models allowed the inclusion of various complex structural and thermal effects such as local buckling, thermal bowing and neutral axis shift that occurred in thin-walled steel studs under non-uniform elevated temperature conditions. Finite element analyses also demonstrated the improvements offered by the new composite panel system over the conventional cavity insulated system.
机译:轻型量规钢框架(LSF)壁由冷弯薄壁钢制通道螺柱制成,两侧均带有石膏板衬里。但是,尽管石膏板提供了保护,这些薄壁钢型材仍会迅速升温并在燃烧条件下失去强度。最近提出了一种新的复合墙板来提高LSF墙的耐火等级,该墙板两侧的石膏板之间在外部使用了隔热层,而不是在空腔中使用了隔热层。进行了一项使用着火试验和数值研究的研究,以研究在标准着火条件下由传统复合板和新型复合板制成的LSF承重墙的结构和热性能,并确定其耐火等级。本文介绍了为模拟标准火灾条件下LSF墙板的结构性能而开发的LSF墙钉的有限元模型的详细信息。有限元分析是在稳态和瞬态条件下使用着火试验期间测得的时间-温度曲线进行的。使用11种LSF墙板的防火测试结果对开发的模型进行了验证,这些墙板具有各种石膏板/绝缘构造和负载比。他们能够在5分钟内预测耐火等级。精确的数值模型的使用允许包含各种复杂的结构和热效应,例如在非均匀升高的高温条件下在薄壁钢钉中发生的局部屈曲,热弯曲和中性轴偏移。有限元分析还证明了新的复合板系统相对于传统的空腔绝缘系统所提供的改进。

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