锂离子电池防火毯涂层隔热材料的采用及早期火灾报警

IF 2 4区 材料科学 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY
H. S. Zhen, B. F. Yang, Q. W. Tang, Z. L. Wei
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引用次数: 0

摘要

本文对用于锂离子电池防火毯涂层的绝缘材料进行了全面的研究。首先,介绍了一种新的测试方法来量化保温剂对毛毯柔软性和包裹性的影响。其次,为了保证毯的防爆性能和其他功能,引入了保温材料,并在1200°C火焰下评估了各种保温剂的保温效果,结果表明,添加10%的20 nm二氧化硅气凝胶的保温效果最好。进一步分析绝缘剂对热解颗粒和烟雾释放的影响表明,与裸露的二氧化硅布相比,这两种浓度都有所升高,从而使火灾探测器能够在尽可能早的阶段触发警报。最后,进行了低温试验,验证了涂层在非火灾情况下的保温性能。结果证实,添加10%的20纳米二氧化硅气凝胶可以提供最好的绝缘。研究结果表明,这种创新的涂层在广泛的温度范围内表现出出色的绝缘性能,并提供重要的火灾探测和保护功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adoption of Heat Insulation Materials for Lithium-Ion Battery Fire Blanket Coating and Earlier Fire Alarming

This article presents a comprehensive study of the insulation materials used for lithium-ion battery fire blanket coatings. First, a novel testing method is introduced to quantify the impact of insulating agents on the softness and wraparound capabilities of the blanket. Second, to guarantee the explosion resistance as well as other functions of the blanket, insulation materials are introduced, and the insulation effectiveness of various insulating agents is assessed using a 1200°C flame, with findings indicating that a 10% addition of 20 nm silica aerogel yields the best insulation effect. Further analysis of the influence of insulating agents on the release of pyrolysis particles and smoke reveals that both concentrations are elevated compared to the bare silicon dioxide cloth, thereby enabling fire detectors to trigger alarms at the earliest possible stage. Finally, low-temperature tests are conducted to verify the enhanced insulation properties of the coating in non-fire scenarios. The outcomes confirm that a 10% addition of 20 nm silica aerogel provides the best insulation. The research results demonstrate that this innovative coating exhibits outstanding insulation performance across a broad temperature range and offers significant fire detection and protection functionalities.

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来源期刊
Fire and Materials
Fire and Materials 工程技术-材料科学:综合
CiteScore
4.60
自引率
5.30%
发文量
72
审稿时长
3 months
期刊介绍: Fire and Materials is an international journal for scientific and technological communications directed at the fire properties of materials and the products into which they are made. This covers all aspects of the polymer field and the end uses where polymers find application; the important developments in the fields of natural products - wood and cellulosics; non-polymeric materials - metals and ceramics; as well as the chemistry and industrial applications of fire retardant chemicals. Contributions will be particularly welcomed on heat release; properties of combustion products - smoke opacity, toxicity and corrosivity; modelling and testing.
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