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Thermal performance of composite panels under fire conditions using numerical studies : plasterboards, rockwool, glass fibre and cellulose insulations

机译:使用数值研究的复合板在火灾条件下的热性能:石膏板,岩棉,玻璃纤维和纤维素绝缘体

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摘要

In recent times, light gauge steel frame (LSF) wall systems are increasingly used in the building industry. They are usually made of cold-formed and thin-walled steel studs that are fire-protected by two layers of plasterboard on both sides. A composite LSF wall panel system was developed recently, where an insulation layer was used externally between the two plasterboards to improve the fire performance of LSF wall panels. In this research, finite element thermal models of the new composite panels were developed using a finite element program, SAFIR, to simulate their thermal performance under both standard and Eurocode design fire curves. Suitable apparent thermal properties of both the gypsum plasterboard and insulation materials were proposed and used in the numerical models. The developed models were then validated by comparing their results with available standard fire test results of composite panels. This paper presents the details of the finite element models of composite panels, the thermal analysis results in the form of time-temperature profiles under standard and Eurocode design fire curves and their comparisons with fire test results. Effects of using rockwool, glass fibre and cellulose fibre insulations with varying thickness and density were also investigated, and the results are presented in this paper. The results show that the use of composite panels in LSF wall systems will improve their fire rating, and that Eurocode design fires are likely to cause severe damage to LSF walls than standard fires.
机译:近年来,轻型钢框架(LSF)墙系统越来越多地用于建筑行业。它们通常由冷弯成型的薄壁钢钉制成,两面都由两层石膏板防火。最近开发了一种复合LSF墙板系统,其中在两个石膏板之间外部使用了隔热层,以改善LSF墙板的防火性能。在这项研究中,使用有限元程序SAFIR开发了新的复合板的有限元热模型,以模拟其在标准和欧洲规范设计防火曲线下的热性能。提出了石膏石膏板和隔热材料的合适的表观热性能,并将其用于数值模型。然后,通过将开发的模型结果与复合面板的可用标准耐火测试结果进行比较,来验证开发的模型。本文详细介绍了复合板的有限元模型,以标准和欧洲规范设计着火曲线下的时间-温度曲线形式给出了热分析结果,并将其与着火测试结果进行了比较。还研究了使用厚度和密度不同的岩棉,玻璃纤维和纤维素纤维保温材料的效果,并在本文中给出了结果。结果表明,在LSF墙壁系统中使用复合板将提高其防火等级,并且与标准火灾相比,欧洲规范设计火灾可能对LSF墙壁造成严重破坏。

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