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Experimental and theoretical research on the fire safety of a building insulation material via the ignition process study

机译:通过点火过程研究建筑保温材料防火安全性的实验和理论研究

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A series of experiments were carried out on extruded polystyrene (XPS) foam using a vertical thermal radiator. Measurements were taken for the ignition time, the pyrolysis mass and the temperature distribution. Two kinds of XPS foam with flame retardant levels of B1 and B2 were tested in the experiments and the incident heat fluxes were set as 20, 30, 35, 40, 50 and 60?kW/m2. For the XPS shrinks to a thin layer under the thermal radiator heating, thus the classical ignition theory may be improper and the new functions relationship between the ignition time and the radiant heat flux was derived in theory and experiment. What's more, the pyrolysis mass increases with the radiant heat flux, while the extent of increasing reduces as the radiant heat flux increases. And the result of temperature distribution indicated that under high incident heat flux the flame retardant treatment becomes less effective. The research results were useful for the theory and the experimental study on the fire characteristic of foamed polymer under vertical radiation condition.
机译:使用立式散热器对挤塑聚苯乙烯(XPS)泡沫进行了一系列实验。测量点火时间,热解质量和温度分布。在实验中测试了两种具有B1和B2阻燃水平的XPS泡沫,并将入射热通量设置为20、30、35、40、50和60?kW / m2。由于XPS在散热器加热下收缩为薄层,因此经典的点火理论可能是不正确的,理论和实验推导了点火时间与辐射热通量之间的新函数关系。此外,热解质量随着辐射热通量的增加而增加,而增加的程度则随着辐射热通量的增加而减小。温度分布的结果表明,在高入射热通量下,阻燃处理的效果不佳。研究结果为泡沫聚合物在垂直辐射条件下的着火特性的理论研究和实验研究提供了参考。

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