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Assessment of Fire Performance of Typical Furniture Foams with and without Fire Retardants Using a Cone Calorimeter

机译:使用锥形量热仪评估具有和不具有阻燃剂的典型家具泡沫的防火性能

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摘要

Both thermal and smoke aspects on typical samples of furniture foams with and without fire retardants available in the market were tested with a cone calorimeter. To study their behaviour under big fires, high incident radiative heat fluxes up to 70 kWm~(-2) were adjusted. Transient curves on heat release rate, mass loss rate, carbon monoxide concentration, carbon dioxide concentration, smoke release rate and other key parameters were measured. Further, chemical constituents of the fire retardants were analyzed by X-ray fluorescence, Fourier Transform Infrared, Gas Chromatography/ Mass Spectrometry and Pyrolysis Gas Chromatography Mass Spectrometry. It is observed that foam treated with fire retardant would not be ignited under an incident heat flux of 10 KWm~(-2). However, when burning under heat fluxes higher than 20 kWm~(-2), there is not much improvement in the thermal aspect for foam treated with fire retardants. Even more smoke and toxic gases such as carbon monoxide was emitted. Therefore, testing ignitibility of furniture foam materials under a small match flame is not adequate. Tests with high radiative heat flux encountered in big fires are suggested. Cone calorimeter tests proposed in this paper would give a better assessment on fire safety. Finally, three riskparameters are proposed to work out a combustibility database.
机译:使用锥形量热计测试了市场上可买到的含或不含阻燃剂的家具泡沫典型样品的热和烟气方面。为了研究它们在大火下的行为,调节了高达70 kWm〜(-2)的高入射辐射热通量。测量了放热率,质量损失率,一氧化碳浓度,二氧化碳浓度,烟雾释放率和其他关键参数的瞬态曲线。此外,通过X射线荧光,傅立叶变换红外,气相色谱/质谱和热解气相色谱质谱法分析了阻燃剂的化学成分。观察到用阻燃剂处理的泡沫在入射热通量为10 KWm〜(-2)时不会着火。但是,当在高于20 kWm〜(-2)的热通量下燃烧时,用阻燃剂处理的泡沫在热方面没有太大改善。甚至排放出更多的烟雾和有毒气体,例如一氧化碳。因此,在小火柴下测试家具泡沫材料的可燃性是不够的。建议在大火中进行具有高辐射热通量的测试。本文提出的锥形量热仪测试可以更好地评估消防安全性。最后,提出了三个风险参数来建立可燃性数据库。

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