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A propane burner test for passive fire protection (PFP) formulations containing added halloysite, carbon nanotubes and graphene

机译:丙烷燃烧器测试,用于包含添加的埃洛石,碳纳米管和石墨烯的被动防火(PFP)配方

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摘要

Passive fire protection materials (PFP) have been characterised quantitatively using a constant heat flux propane burner test, with the PFP attached to a steel substrate. The burner test was able to produce a large, constant heat flux, to simulate a severe fire condition. The heat transferred through the PFP was calculated from the temperature rise of the steel. A simplified model is discussed, to account for different combinations of substrate thickness, PFP thickness, heat flux and exposure time. It was found that, despite the complex processes of resin decomposition and intumescence, heat transmission could be modelled, to a reasonable approximation, by treating the PFP as a material with single point values of apparent thermal diffusivity and conductivity. This leads to an equation that can be used to characterise PFPs and indeed to specify their required thickness.The burner test was employed to interpret the effects of adding small quantities of three nano-materials: halloysite nanotubes (HNT), multi-walled carbon nanotubes (MWCNT) and graphene nanoplatelets (GNP), to a standard PFP formulation. It was found that HNT addition resulted in a significant performance improvement, whereas the other nano-materials did not produce an improvement.
机译:被动防火材料(PFP)已通过恒定热通量丙烷燃烧器测试进行了定量表征,PFP附着在钢质基材上。燃烧器测试能够产生较大的恒定热通量,以模拟严重的火灾情况。根据钢的温度升高计算出通过PFP传递的热量。讨论了简化的模型,以说明基板厚度,PFP厚度,热通量和曝光时间的不同组合。已经发现,尽管树脂分解和膨胀的过程很复杂,但通过将PFP视为具有表观热扩散率和电导率的单点值的材料,可以将热传递模型化为合理的近似值。这导致可以用来表征PFP并确定其所需厚度的方程式。燃烧器测试用于解释添加少量三种纳米材料的影响:埃洛石纳米管(HNT),多壁碳纳米管(MWCNT)和石墨烯纳米片(GNP)制成标准PFP配方。发现添加HNT导致显着的性能改善,而其他纳米材料没有产生改善。

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