Department of Architecture and Architectural Engineering, Yonsei University, Seoul 03722, Republic of Korea.
Department of Architecture and Architectural Engineering, Yonsei University, Seoul 03722, Republic of Korea.
Environ Pollut. 2022 Nov 1;312:120067. doi: 10.1016/j.envpol.2022.120067. Epub 2022 Sep 3.
According to fire accident statistics, fires in buildings are increasing. The flame-retardant performance of insulation materials is considered an important factor for preventing the spread of fire and ensuring evacuation. This study evaluated the flame-retardant performance and combustion characteristics of four types of organic thermal insulation used as core materials in sandwich panels. The flame-retardant performance evaluation based on total heat release and heat release rate revealed that phenolic foam (PF) satisfied the criteria for non-combustible grade insulation. An analysis of the hazardous gases released while combustion of the four insulation materials indicated that a significant amount of CO was released-an average of 19,000 ppm or higher-in the rigid urethan foam (PIR) and spray-type polyurethane foam (SPU). The fractional effective dose (FED) value was derived from the gas analysis results according to ISO 13344. PIR and SPU had an average FED value of 2.0 or higher and were identified as very dangerous in the case of fire accidents. Moreover, the evacuation time in the case of a fire in a warehouse-type building was comprehensively analyzed considering the material, size, and height for the four types of insulation. PIR was the most vulnerable to fire, and for PF, the danger limit was not reached until the end of the simulation.
根据火灾事故统计数据,建筑物内的火灾呈上升趋势。保温材料的阻燃性能被认为是防止火势蔓延和确保人员疏散的重要因素。本研究评估了四种用作夹芯板芯材的有机热绝缘材料的阻燃性能和燃烧特性。基于总放热量和放热量率的阻燃性能评估表明,酚醛泡沫(PF)满足不燃级绝缘材料的标准。对四种保温材料燃烧时释放的危险气体进行分析表明,硬质聚氨酯泡沫(PIR)和喷涂型聚氨酯泡沫(SPU)释放出大量的 CO,平均在 19,000 ppm 或更高。根据 ISO 13344 从气体分析结果中得出分数有效剂量(FED)值。PIR 和 SPU 的平均 FED 值为 2.0 或更高,在火灾事故中被确定为非常危险。此外,综合考虑四种保温材料的材料、尺寸和高度,对仓库式建筑火灾中的人员疏散时间进行了全面分析。PIR 最容易发生火灾,而对于 PF,在模拟结束前,危险极限尚未达到。