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Experimental study on combustion characteristics for polyurethane- aluminum composite insulation material under different heat fluxes

机译:不同热通量下聚氨酯 - 铝复合绝缘材料燃烧特性的试验研究

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The decorative materials with external insulation release a large amount of smoke and heat in fires, and cause severe hazard and losses to human beings and properties. In this paper, the combustion characteristics of polyurethane-aluminum composite material, including ignition time, heat release rate, mass loss rate, concentration of gas components and other parameters, are studied and analyzed under six different heat fluxes, namely 25, 30, 35, 40, 45 and 50 kW/m~2, with cone calorimeter to investigate the combustion performance of the material. The results show that the heat release rate reaches a minimum value under a flux of about 30 kW/m~2. The curve trends of CO and CO_2 concentrations, mass loss rate and heat release rate over time are similar, whereas the concentration of O_2 changes inversely. Based on the experimental data, the classic formula between ignition time and radiation heat flux of thermally thick material can be used to predict the pyrolysis process of polyurethane-aluminum composite materials successfully, but the critical heat flux cannot be predicted.
机译:外部绝缘材料的装饰材料释放出大量的烟雾和热量,并对人类和性质引起严重的危害和损失。本文在六种不同的热量通量下,研究并分析了聚氨酯 - 铝复合材料的燃烧特性,包括点火时间,热释放速率,质量损失,气体成分和其他参数的浓度,即分析,即25,30,35 40,45和50 kW / m〜2,锥形量热计研究了材料的燃烧性能。结果表明,热释放速率在约30kW / m〜2的通量下达到最小值。 CO和CO_2浓度,质量损失和热释放率随时间的曲线趋势是相似的,而O_2的浓度变化成反比。基于实验数据,热厚材料的点火时间和辐射热通量之间的经典公式可用于预测聚氨酯 - 铝合金材料的热解过程成功,但不能预测临界热通量。

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