[1]DIAZ L B,HE X Z,HU Z W,et al.Meta-review of fire safety of lithiumion batteries:industry challenges and research contributions[J].Journal of the Electrochemical Society,2020,167(9):1-14.
[2]RIBIERE P,GRUGEON S,MORCRETTE M,et al.Investigation on the fire-induced hazards of liion battery cells by fire calorimetry[J].Energy Environ Science,2012,5(1):5271-5280.
[3]郑开汇.阻燃电解液的燃烧特性研究[D].太原:中北大学,2021.
[4]施志成,周勇,程旭东.锂离子电池电解液火灾的烟雾探测方法研究[J].火灾科学,2021,30(2):107-112.
SHI Zhicheng,ZHOU Yong,CHENG Xudong.Smoke scattering characteristics of electrolyte fire of lithiumion battery[J].Fire Safety Science,2021,30(2):107-112.
[5]李聪,周勇.锂离子电池火灾烟雾不对称比研究[J].中国安全科学学报,2022,32(4):93-98.
LI Cong,ZHOU Yong.Study on asymmetry ratio of liion battery fire smoke[J].China Safety Science Journal,2022,32(4):93-98.
[6]宋广韬.飞机货舱锂电池火灾气体探测技术研究[D].天津:中国民航大学,2016.
[7]皇甫趁心.动力锂电池火灾热失控早期探测技术及装置开发[D].泉州:华侨大学,2018.
[8]KARP M,FREILING A.Characterizing smoke generatorsmoke transport for aircraft cargo smoke detection certification[C]//17th International Conference on Automatic Fire Detection,Duisburg,2021.
[9]廖正海,张国强.锂离子电池热失控早期预警研究进展[J].电工电能新技术,2019,38(10):61-66.
LIAO Zhenghai,ZHANG Guoqiang.Progress on early warning technology for thermal runaway of lithiumion battery[J].Advanced Technology of Electrical Engineering and Energy,2019,38(10):61-66.
[10]SASCHA K,KAI B,ROBERT K.Fast thermal runaway detection for lithiumion cells in large scale traction batteries[J].Batteries,2018,4(2):1-16.
[11]马绥华,张永明,方俊,等.凝并作用下火灾烟颗粒粒径分布及变化[J].燃烧科学与技术,2007(2):147-151.
MA Suihua,ZHANG Yongming,FANG Jun,et al.Fire smoke particle size distribution evolution under brownian coagulation[J].Journal of Combustion Science and Technology,2007(2):147-151.
[12]钱新明,周波.绝热加速量热仪研究锂离子电池电解液热安全性[J].安全与环境学报,2005,5(2):106-111.
QIAN Xinming,ZHOU Bo.Application of accelerating rate calorimeter on thermal safety of lithium-ion battery electrolytes[J].Journal of Safety and Environment,2005,5(2):106-111.
[13]全国消防标准化技术委员会.点型感烟火灾探测器:GB 4715—2005[S].北京:中国标准出版社,2005.
[14]KIM W Y,SORENSEN C A,FRY D,et al.Soot aggregates,superaggregates and gel-like networks in laminar diffusion flames[J].Journal of Aerosol Science,2006,37:386-401.
[15]DOBBINS R A,MEGARIDIS C M.Absorption and scattering of light by polydisperse aggregates[J].Applied Optics,1991,30(33):4747-4754.
[16]SAMSON R J,MULHOLLAND G W,GENTRY J W.Structural analysis of soot agglomerates[J].Langmuir,1987,3(2):272-284.
[17]PURI R,RICHARDSON T F,SANTORO R J,et al.Aerosol dynamic processes of soot aggregates in a laminar ethene diffusion flame[J].Combustion and Flame,1993,92(3):320-333.
[18]KOYLU U O,FAETH G M,FARIAS T L,et al.Fractal and projected structure properties of soot aggregates[J].Combustion and Flame,1995,100(4):621-633.