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Fire performance of prefabricated modular units using organoclay/glass fibre reinforced polymer composite

机译:使用有机粘土/玻璃纤维增​​强聚合物复合材料的预制模块化装置的防火性能

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Composite materials like FRPs offer the advantages of the high strength and stiffness with their low density and highly flexible shaping, thus, their potential in replacing conventional materials such as aluminium and steel for prefabrication of modular residential and office applications. The main limitation of fibre reinforced polymer composites (FRPCs) is their relatively poor fire performance. In this study, two CFD models using the modified Mc Grattan and the modified Coats Redfern - Kissinger method were developed to mimic the testing conditions of thermo-gravimetric analysis and cone calorimeter. Validation with experiments proves that the models can realistically predict the fire growth index (FIGRA) and total heat release (THR) of the organoclay/glass fibre reinforced polymer (GFRP) laminates. Two other CFD models were also developed to predict the behaviour of GFRP facade panel, where GFRP laminates are sandwiched with the foam core and undergo ISO 9750-1:2013 conditions in a typical office defined by the National Construction Code, Australia and a city office building in Netherlands. In the first case, 5% organoclay in GFRP prevents flash-over from happening and also the flame from spreading in the horizontal direction. In the second case, organoclay/GFRP panel is tested with different configurations. FIGRAs and THRs in all the selected configurations were found to be well below the thresholds required for building environment. 2016 Elsevier Ltd. All rights reserved.
机译:诸如FRPs的复合材料具有密度低,成形灵活性高的优点,因此具有高强度和刚度的优点,因此,它们具有替代传统材料(如铝和钢)的潜力,可用于模块化住宅和办公室应用的预制。纤维增强聚合物复合材料(FRPC)的主要局限性是其相对较差的防火性能。在这项研究中,使用改进的Mc Grattan和改进的Coats Redfern-Kissinger方法开发了两个CFD模型,以模拟热重分析和锥形量热仪的测试条件。实验验证表明,该模型可以现实地预测有机粘土/玻璃纤维增​​强聚合物(GFRP)层压板的火势增长指数(FIGRA)和总热量释放(THR)。还开发了另外两个CFD模型来预测GFRP外墙面板的性能,其中GFRP层压板夹在泡沫芯中,并在澳大利亚国家建筑法规和城市办公室定义的典型办公室中通过ISO 9750-1:2013条件建筑在荷兰。在第一种情况下,GFRP中的5%有机粘土可防止飞弧的发生以及火焰在水平方向上的扩散。在第二种情况下,对有机粘土/ GFRP面板进行了不同配置的测试。发现所有选定配置中的FIGRA和THR都远低于建筑环境所需的阈值。 2016 Elsevier Ltd.保留所有权利。

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