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Modeling the Effect of Thermophysical Properties on Pyrolysis of Intumescent Fire-retardant Materials

机译:模拟热物理性质对膨胀型阻燃材料热解的影响

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摘要

Thermophysical properties of intumescent fire-retardant (IFR) materials are important input parameters to simulate the pyrolysis process of IFR materials in fire scenarios. In this article, the effects of the thermophysical properties on pyrolysis of IFR materials are simulated based on a pyrolysis model of IFR materials. The selected thermophysical properties here are the specific heat capacity of the virgin material, thermal conductivity of the virgin material and char layer, heat of decomposition, density of virgin material, intumescent temperature, and surface emissivity of virgin material and char layer. Simulated mass loss rates (MLR) for the IFR materials at an incident heat flux of 50 kW/m~2 are investigated for the varied thermophysical parameter values. The results show that changes in these property values can affect the pyrolysis behavior of materials profoundly. Comparison with experimental results indicates that the simulations of MLR are in reasonably good agreement with the experiments.
机译:膨胀型阻燃(IFR)材料的热物理性质是重要的输入参数,用于模拟IFR材料在火灾情况下的热解过程。在本文中,基于IFR材料的热解模型,模拟了热物理性质对IFR材料热解的影响。这里选择的热物理性质是原始材料的比热容,原始材料和炭层的热导率,分解热,原始材料的密度,膨胀温度,以及原始材料和炭层的表面发射率。针对变化的热物理参数值,研究了入射热通量为50 kW / m〜2时IFR材料的模拟质量损失率(MLR)。结果表明,这些性质值的变化会深刻影响材料的热解行为。与实验结果的比较表明,MLR的仿真与实验相当吻合。

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