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Characterization of ignition and combustion characteristics of phenolic fiber-reinforced plastic with different thicknesses

机译:不同厚度酚类纤维增强塑料的点火和燃烧特性的表征

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摘要

The present study focuses on ignition and combustion characteristics of phenolic fiber-reinforced plastic (FRP) with different thicknesses under different external heat fluxes using cone calorimeter, which receives little attention to date. A series of parameters including ignition time, thermal thickness, mass loss factor, mass loss rate (MLR), heat release rate (HRR), total heat release (THR), fire performance index (FPI) and fire growth index (FGI) are measured or calculated. Results indicate that the ignition time increases with the thickness, but decreases with the external heat flux. Phenolic FRP with thickness of 3 mm may be considered as thermally thin material. However, phenolic FRP with thickness of 5 and 8 mm is prone to be thermally thick material. The critical heat flux, minimum heat flux and ignition temperature are deduced and validated. The thermal thickness increases with the external heat flux. Linear correlations of the thermal thickness with the ratio of specimen density and external heat flux are demonstrated and presented. The mass loss factor decreases with the thickness. Three and two peak MLRs occur in the cases of low and high external heat fluxes, respectively. The average MLR increases with the external heat flux and thickness. The average and maximum HRR increases with the external heat flux. The FGI for the maximum HRR increases with the external heat flux. Linear correlations of the average MLR, the average and maximum HRR and the FGI for the maximum HRR with the external heat flux are demonstrated and presented.
机译:本研究专注于酚醛纤维增强塑料(FRP)的点火和燃烧特性,使用锥形量热计根据不同的外部热通量在不同的外部热通量下的点火和燃烧特性,这几乎没有注意到日期。一系列参数包括点火时间,热厚度,质量损失因子,质量损失率(MLR),热释放率(HRR),总热释放率(THRR),火灾性能指数(FPI)和火灾生长指数(FGI)是测量或计算。结果表明点火时间随厚度的增加,但随着外部热通量减小。厚度为3mm的酚浆可以被认为是热薄材料。然而,厚度为5和8mm的酚纤维易于热厚材料。推导和验证临界热通量,最小热通量和点火温度。热厚度随外部热通量增加。对样品密度和外部热通量比率的热厚度的线性相关性得到说明和呈现。质量损失因子随厚度降低。在低外部热通量和高外部热通量的情况下,发生了三个和两个峰MLR。平均MLR随着外部热通量和厚度而增加。用外部热通量增加平均值和最大HRR。最大HRR的FGI随着外部热通量增加。对具有外部热通量的平均MLR,平均和最大HRR和最大HRR的FGI的线性相关性得到说明和呈现。

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