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Experimental Study of Fire Hazards of Thermal-Insulation Material in Diesel Locomotive: Aluminum-Polyurethane

机译:柴油机车隔热材料火灾隐患的实验研究

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This work investigated experimentally and theoretically the fire hazards of thermal-insulation materials used in diesel locomotives under different radiation heat fluxes. Based on the experimental results, the critical heat flux for ignition was determined to be 6.15 kW/m 2 and 16.39 kW/m 2 for pure polyurethane and aluminum-polyurethane respectively. A theoretical model was established for both to predict the fire behaviors under different circumstances. The fire behavior of the materials was evaluated based on the flashover and the total heat release rate (HRR). The fire hazards levels were classified based on different experimental results. It was found that the fire resistance performance of aluminum-polyurethane is much better than that of pure-polyurethane under various external heat fluxes. The concentration of toxic pyrolysis volatiles generated from aluminum-polyurethane materials is much higher than that of pure polyurethane materials, especially when the heat flux is below 50 kW/m 2 . The hazard index HI during peak width time was proposed based on the comprehensive impact of time and concentrations. The predicted HI in this model coincides with the existed N-gas and FED models which are generally used to evaluate the fire gas hazard in previous researches. The integrated model named HNF was proposed as well to estimate the fire hazards of materials by interpolation and weighted average calculation.
机译:这项工作从理论和实验上研究了柴油机车用绝热材料在不同辐射热通量下的着火危险。根据实验结果,对于纯聚氨酯和铝-聚氨酯,确定的点火临界热通量分别为6.15 kW / m 2和16.39 kW / m 2。建立了两种理论模型来预测不同情况下的火灾行为。根据闪络和总放热率(HRR)评估材料的防火性能。根据不同的实验结果对火灾危害等级进行了分类。发现在各种外部热通量下,铝-聚氨酯的耐火性能比纯聚氨酯好得多。由铝-聚氨酯材料产生的有毒的热解挥发物的浓度远高于纯聚氨酯材料,特别是当热通量低于50 kW / m 2时。基于时间和浓度的综合影响,提出了峰宽时间内的危害指数HI。该模型中的预测HI与现有的N-gas和FED模型相吻合,后者在先前的研究中通常用于评估燃气危害。提出了HNF综合模型,通过插值和加权平均计算来估计材料的火灾隐患。

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