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Modelling Behaviour of a Carbon Epoxy Composite Exposed to Fire: Part II—Comparison with Experimental Results

机译:着火的碳环氧复合材料的建模行为:第二部分-与实验结果的比较

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摘要

Based on a phenomenological methodology, a three dimensional (3D) thermochemical model was developed to predict the temperature profile, the mass loss and the decomposition front of a carbon-reinforced epoxy composite laminate (T700/M21 composite) exposed to fire conditions. This 3D model takes into account the energy accumulation by the solid material, the anisotropic heat conduction, the thermal decomposition of the material, the gas mass flow into the composite, and the internal pressure. Thermophysical properties defined as temperature dependant properties were characterised using existing as well as innovative methodologies in order to use them as inputs into our physical model. The 3D thermochemical model accurately predicts the measured mass loss and observed decomposition front when the carbon fibre/epoxy composite is directly impacted by a propane flame. In short, the model shows its capability to predict the fire behaviour of a carbon fibre reinforced composite for fire safety engineering.
机译:基于现象学方法,开发了三维(3D)热化学模型来预测暴露于火源的碳增强环氧复合材料层压板(T700 / M21复合材料)的温度曲线,质量损失和分解前沿。该3D模型考虑了固体材料的能量积累,各向异性的热传导,材料的热分解,流入复合材料的气体质量以及内部压力。使用现有方法和创新方法对定义为温度依赖性的热物理性质进行表征,以便将其用作我们的物理模型的输入。当碳纤维/环氧树脂复合材料直接受到丙烷火焰的冲击时,3D热化学模型可以准确预测测得的质量损失和观察到的分解前沿。简而言之,该模型显示了其预测用于消防安全工程的碳纤维增强复合材料的防火性能的能力。

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