Computed Tomography Analysis of Li-Ion Battery Case Ruptures

被引:0
作者
Lingxi Kong
Xiaosong Hu
Guan Gui
Yan Su
Michael Pecht
机构
[1] University of Maryland,Center for Advanced Life Cycle Engineering
[2] Chongqing University,Department of Automotive Engineering
[3] Nanjing University of Posts and Telecommunications,College of Telecommunications and Information Engineering
[4] Nanjing University of Aeronautics and Astronautics,College of Civil Aviation
来源
Fire Technology | 2020年 / 56卷
关键词
Lithium-ion battery; CT scan; Thermal runaway; Exterior case rupture; Cylindrical battery;
D O I
暂无
中图分类号
学科分类号
摘要
Battery explosion incidents hinder the development and application of Li-ion batteries. This paper describes the use of nondestructive computed tomography (CT) to analyze cylindrical Li-ion battery samples that underwent thermal runaway and exploded. Unlike destructive analysis methods, which can lead to a loss of battery structural information, CT scan allows direct observation of a battery’s internal structure without disassembly. In this study, two case studies of 20700 and 18650 batteries show that sidewall and bottom case rupture was caused by blockage of the battery vent region, which prevented the release of the generated gas. This work demonstrates the ability of CT for post-mortem incident analysis and the limitations of current vent design, and also gives insight to a safety issue with some cylindrical batteries.
引用
收藏
页码:2565 / 2578
页数:13
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共 84 条
[1]  
Ditch B(2018)The impact of thermal runaway on sprinkler protection recommendations for warehouse storage of cartoned lithium-ion batteries Fire Technol 54 359-377
[2]  
Wang Q(2016)The efficiency of heptafluoropropane fire extinguishing agent on suppressing the lithium titanate battery fire Fire Technol 52 387-396
[3]  
Shao G(2016)Experimental study on the combustion characteristics of primary lithium batteries fire Fire Technol 52 365-385
[4]  
Duan Q(2018)Experimental analysis of thermal runaway propagation risk within 18650 lithium-ion battery modules J Electrochem Soc 165 A1925-A1934
[5]  
Chen M(2016)Experimental and modeling analysis of thermal runaway propagation over the large format energy storage battery module with Li4Ti5O12 anode Appl Energy 183 659-673
[6]  
Li Y(2019)Comprehensive analysis of dynamics and hazards associated with cascading failure in 18650 lithium ion cell arrays Appl Energy 248 415-428
[7]  
Wu K(2020)Experimental investigation of cascading failure in 18650 lithium ion cell arrays: Impact of cathode chemistry J Power Sources 446 227347-414
[8]  
Liu B(2006)Safety mechanisms in lithium-ion batteries J Power Sources 155 401-172
[9]  
Peng P(2016)Energetics of lithium ion battery failure J Hazard Mater 318 164-100
[10]  
Sun J(2003)Abuse behavior of high-power, lithium-ion cells J Power Sources 113 81-741