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Numerical studies of gypsum plasterboard and MgO board lined LSF walls exposed to fire

机译:石膏石膏板和氧化镁板衬砌的LSF墙着火的数值研究

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摘要

Fire resistance of cold-formed light gauge steel frame (LSF) wall systems is enhanced by lining them with single or multiple layers of wall boards with varying thermal properties. These wall boards are gypsum plasterboards or Magnesium Oxide (MgO) boards produced by different manufacturers. Thermal properties of these boards appear to show considerable variations and this can lead to varying fire resistance levels (FRL) for their wall systems. Currently FRLs of wall systems are determined using full scale fire tests, but they are time consuming and expensive. Recent research studies on the fire performance of LSF wall systems have used finite element studies to overcome this problem, but they were developed based on 1-D and 2-D finite element platform capable of performing either heat transfer or structural analysis separately. Hence in this research a 3-D finite element model was developed first for LSF walls lined with gypsum plasterboard and cavity insulation materials. Accurate thermal properties of these boards are essential for finite element modelling, and thus they were measured at both ambient and elevated temperatures. This experimental study included specific heat, relative density and thermal conductivity of boards. The developed 3-D finite element model was then validated using the available fire tests results of LSF walls lined with gypsum plasterboard, and is being used to investigate the fire performance of different LSF wall configurations. The tested MgO board exhibited significant variations in their thermal properties in comparison to gypsum plasterboards with about 50% loss of its initial mass at about 500 ºC compared to 16% for gypsum plasterboards. Hence the FRL of MgO board lined LSF wall systems is likely to be significantly reduced. This paper presents the details of this research study on the fire performance of LSF wall systems lined with gypsum plasterboard and MgO board including the developed 3-D finite element models, thermal property tests and the results.
机译:冷成型轻型钢框架(LSF)墙系统的耐火性通过在单层或多层热性能各不相同的壁板上衬砌来增强。这些墙板是不同制造商生产的石膏灰泥板或氧化镁(MgO)板。这些板的热性能似乎显示出很大的差异,这可能导致其墙体系统的耐火等级(FRL)发生变化。当前,墙壁系统的FRL是使用全面的防火测试确定的,但它们既耗时又昂贵。关于LSF墙体系统防火性能的最新研究已经使用有限元研究来克服此问题,但是它们是基于能够分别执行传热或结构分析的一维和二维有限元平台开发的。因此,在这项研究中,首先为衬有石膏灰泥板和型腔隔热材料的LSF墙开发了3-D有限元模型。这些板的精确热性能对于有限元建模至关重要,因此,它们是在环境温度和高温条件下进行测量的。该实验研究包括板的比热,相对密度和导热系数。然后,使用衬有石膏板的LSF墙的可用防火测试结果验证开发的3-D有限元模型,并将其用于研究不同LSF墙配置的防火性能。与石膏石膏板相比,测试的MgO板在热性能方面表现出显着变化,在约500ºC时其初始质量损失了约50%,而石膏石膏板的损失为16%。因此,衬有MgO板的LSF墙系统的FRL可能会大大降低。本文介绍了本研究对衬有石膏灰泥板和MgO板的LSF墙体系统的防火性能的研究细节,包括已开发的3-D有限元模型,热性能测试和结果。

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