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Effect of flame heat flux on thermal response and fire properties of char-forming composite materials

机译:火焰热通量对成炭复合材料热响应和燃烧性能的影响

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摘要

This study evaluates the effect of flame heat flux on the prediction of thermal response and fire properties of a char-forming composite material. A simplified two-layer flame model was developed and incorporated into a heat transfer thermal model to predict the thermal response and fire reaction characteristics of a burning material. A typical char-forming material, E-glass reinforced polyester composite, was used in the study. A cone calorimeter was used to measure the fire reaction characteristics of the composite. The flame heat flux in a cone calorimeter test setup was estimated using the simplified flame model. Thermal response and fire property predictions with and without the effect of flame heat flux were compared with experimental data obtained from the cone calorimeter tests. Results showed that the average flame heat flux of the composite in a cone calorimeter was 19.1 ±6kW/m2 from model predictions. The flame had a significant effect on the thermal response and fire properties of the composite around the first heat release peak but the effect decreased rapidly afterwards.
机译:这项研究评估了火焰热通量对预测成炭复合材料的热响应和着火性能的影响。开发了简化的两层火焰模型,并将其纳入热传递热模型中,以预测燃烧材料的热响应和火反应特性。在研究中使用了一种典型的成炭材料,E-玻璃纤维增​​强聚酯复合材料。锥形量热仪用于测量复合材料的起火反应特性。使用简化的火焰模型估算了锥形量热仪测试装置中的火焰热通量。将有或没有火焰热通量影响的热响应和火属性预测与从锥形量热仪测试获得的实验数据进行了比较。结果表明,根据模型预测,锥形量热仪中复合材料的平均火焰热通量为19.1±6kW / m2。在第一个放热峰附近,火焰对复合材料的热响应和着火性能有重大影响,但此后此影响迅速降低。

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