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Fire tests and thermal analyses of LSF walls insulated with silica aerogel fibreglass blanket

机译:用二氧化硅气凝胶玻璃纤维覆盖物绝缘的LSF墙体的火灾试验和热分析

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Load-bearing light gauge steel framed (LSF) wall is one of the main structural elements in cold-formed steel (CFS) buildings. When cavity insulation is used to enhance the energy performance of LSF walls, their structural adequacy based fire resistance levels (FRL) decrease considerably. Hence, new insulation materials and/or different wall configurations are considered. This research study investigated the use of silica aerogel fibreglass blanket as external insulation to enhance the FRL of LSF walls. Three fire tests were conducted to determine the timetemperature profiles of different wall components and the FRL of aerogel blanket insulated LSF walls. Suitable finite element (FE) models were then developed, validated and used to further optimise the LSF wall configuration. This study shows that silica aerogel fibreglass blanket, when used as a form of external insulation, enhances the fire resistance by delaying the stud temperature development by about 20 min and reducing the stud flange temperature difference by up to 200 ?C when compared with cavity insulated LSF walls. However, the aerogel blanket accelerates the temperature development of fire protective gypsum boards, which leads to an early failure of these boards. This paper presents the details of the fire tests, finite element study and their findings.
机译:承重灯具钢框架(LSF)壁是冷成型钢(CFS)建筑中的主要结构元件之一。当使用腔隔热来增强LSF壁的能量性能时,基于结构充足的耐火水平(FRL)显着降低。因此,考虑新的绝缘材料和/或不同的壁构造。该研究研究调查了使用石英气凝胶玻璃纤维毯作为外部绝缘,以增强LSF墙壁的FRL。进行了三次消防试验以确定不同墙板的时间温度和气凝胶橡皮布绝缘LSF墙的FRL。然后开发出合适的有限元(FE)模型,验证并用于进一步优化LSF墙壁配置。本研究表明,当用作外部绝缘形式时,二氧化硅气凝胶玻璃纤维毯通过将螺柱温度发育延迟约20分钟并将螺柱法兰温度差延迟,在与腔内绝缘相比,通过多达200°C减少螺柱法兰温度差异LSF墙壁。然而,Airgel毯加速了防火型石膏板的温度开发,这导致这些板的早期失效。本文介绍了火灾试验,有限元研究及其研究结果的细节。

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