首页 | 本学科首页   官方微博 | 高级检索  
     


Effects of environmental temperature on the thermal runaway of lithium-ion batteries during charging process
Affiliation:1. China People''s Police University, Langfang 065000, China;2. Hulunbuir City Fire Rescue Detachment, Hulunbuir 021000, China;1. Department of Mechanical Engineering, MIT School of Engineering, MIT ADT University, Pune, Maharashtra, India;2. Department of Chemical Engineering, Eskisehir Osmangazi University, Eskisehir 26040, Turkey;3. Electromobility, Volvo Group, Sweden;4. Department of Mechanical and Mechatronics Engineering, University of Waterloo, Ontario, Canada;5. Department of Chemical Engineering, University of Waterloo, Ontario, Canada;6. Kalyani powertrain Ltd, Pune, India
Abstract:Lithium-ion batteries with relatively narrow operating temperature range have provoked concerns regarding the safety of LIBs. In this work, a series of experiments were conducted to explore the thermal runaway (TR) behaviors of charging batteries in a high/low temperature test chamber. The effects of charging rates (0.5 C, 1 C, 2 C, and 3 C), and ambient temperature (2 °C, 32 °C and 56 °C) are comprehensively investigated.The results indicate that the cell exhibited greater thermal hazard at the high charging rate and ambient temperature conditions. As the charging rate increased from 0.5 C to 3 C, more lithium intercalated in the anode prompt the TR triggered in advance, the TR onset temperature decreased from 297.5 °C to 264.7 °C. In addition, the charging time decreased with the elevated ambient temperature, resulting in a relatively higher TR onset temperature and lower maximum temperature, and the average TR critical time declined by 115–143 s. Finally, the TR required less heat accumulation with increasing of charging rate and ambient temperature, and the heat generation of side reaction played a substantial role that accounted for approximately 54%∼63%. These results provide an insight into the charging cell thermal runaway behaviors in complex operation environments and deliver valuable guidance for improving the safety of cell operation.
Keywords:Lithium-ion battery  Charging rate  Ambient temperature  Thermal runaway
本文献已被 ScienceDirect 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号