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Experimental Study on the Smouldering Combustion of Mineral Wool Insulation in Chimney Penetrations

机译:烟囱穿透矿棉保温阴燃的实验研究。

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摘要

A large number of fires have been caused by metal chimney penetrations in recent years. One factor that has contributed to these occurrences is smouldering combustion within mineral wool, which is often used as insulation in metal chimneys and their penetrations. Based on reaction to fire performance mineral wool is typically classified as a non-combustible material and in European standards it belongs to category Euroclass A1. However, mineral wool insulation products contain organic material, which smoulders and generates heat at temperatures between 200 degrees C and 500 degrees C. Experimental research indicates that this additional heat may increase the temperature in the chimney penetration materials over 100 degrees C for a limited period of time. The European fire classification of materials does not set requirements to control mineral wool smouldering and limit the subsequent heat release. This experimental study examined the smouldering of mineral wool insulation products specified for chimney penetrations and the heat release generated during the smouldering combustion. The aim of the study was to determine the actual level of temperature increase within the chimney penetration and to estimate the effects of the increase with regard to fire safety. The study also reviewed how the smouldering potential of an insulation material could be considered in the fire classification of products.
机译:近年来,金属烟囱的穿透引起了大火。导致这些事件发生的一个因素是矿棉内的阴燃,这通常用作金属烟囱及其穿透的隔热材料。基于对防火性能的反应,矿棉通常被归类为不燃材料,在欧洲标准中,其属于欧洲A1类。但是,矿棉隔热产品包含有机材料,该材料会在200摄氏度至500摄氏度之间的温度下sm积并产生热量。实验研究表明,这种额外的热量可能会在有限的时间内使烟囱穿透材料的温度超过100摄氏度。时间。欧洲防火材料分类没有规定控制矿棉闷烧和限制随后放热的要求。这项实验研究检查了为烟囱穿透而指定的矿棉隔热产品的阴燃以及在阴燃燃烧过程中产生的热量释放。这项研究的目的是确定烟囱内渗透的实际温度升高水平,并估计温度升高对消防安全的影响。该研究还回顾了在产品的防火分类中如何考虑绝缘材料的闷燃潜力。

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