Reducing Multi-tap Electrical Fires using Microcapsule Fire Extinguishing Patches

Si-Kuk Kim
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引用次数: 1

Abstract

The fire at the Coupang Deokpyeong Logistics Center has spurred studies to reduce the damage caused by multi-tap electrical fires. One solution is a microcapsule fire extinguishing patch with a built-in fire extinguishing agent. To confirm the efficacy of the fire extinguishing patch in curtailing electrical fires, a complex electrical fire in a multi-tap due to overload and tracking was simulated. In the absence of the fire extinguishing patch, continuous flame discharge occurred as the overcurrent reacted with internal combustibles, resulting in a short circuit due to final tracking and a risk of exposure to flames at 1,187s. In contrast, when an overload was applied to the multi-tap with the fire extinguishing patch for 2,400 s, the fire extinguishing agent stored in the microcapsule was released, preventing ignition of the combustibles inside the multi-tap and the formation of the carbonic electric conductive pass due to cooling, suffocation, and anticatalyst effects. Therefore, the overload did not lead to a fire, confirming the ability of the patch to retard electrical fires in the multi-tap. Evaluation of the effect of the location of the fire extinguishing patch showed that the fire extinguishing effect was most significant when the fire extinguishing patch was attached inside the multi-tap.
使用微胶囊灭火贴片减少多喷头电气火灾
发生在Coupang德坪物流中心的火灾,引发了减少多龙头电气火灾造成的损失的研究。一种解决方案是内置灭火剂的微胶囊灭火贴片。为了验证该灭火贴片在减少电气火灾中的有效性,对一个复杂的多抽头因过载和跟踪引起的电气火灾进行了仿真。在没有灭火贴片的情况下,当过电流与内部可燃物反应时,会发生持续的火焰放电,导致最终跟踪导致短路,并在1187秒时暴露在火焰中。相比之下,当对带有灭火贴片的多龙头施加过载2400s时,储存在微胶囊中的灭火剂被释放,防止了多龙头内可燃物因冷却、窒息和抗催化剂作用而着火和碳导电通道的形成。因此,过载没有导致火灾,证实了该贴片在多接头中延迟电气火灾的能力。对灭火贴片位置的效果评价表明,当灭火贴片贴在多龙头内部时,灭火效果最显著。
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