4.5 Article Proceedings Paper

Effects of the environmental temperature and heat dissipation condition on the thermal runaway of lithium ion batteries during the charge-discharge process

期刊

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.jlp.2017.05.029

关键词

Lithium-ion battery; Thermal runaway; Environmental temperature; Heat dissipation condition; Charging-discharging

资金

  1. project funding for key R & D programs (Social Development) in Jiangsu Province [BE2016771]
  2. Jiangsu Project Plan for Outstanding Talents in Six Research Fields
  3. QingLan Project Plan for Young academic leaders at Universities in Jiangsu
  4. National Natural Science Foundations of China [21406115]
  5. Natural Science Foundation of Jiangsu Province [BK20140950]
  6. Jiangsu province ordinary university graduate student scientific research innovation project [KYLX_0782]

向作者/读者索取更多资源

Fires and explosions due to thermal runaway are the main hazardous characteristics of lithium ion batteries. This paper focuses on the thermal behavior of lithium ion batteries during the charge discharge process under different environmental temperatures and heat dissipation conditions. An electric heating testing apparatus has been set up to perform a series of experiments with 2600 mAh Sanyo 18,650 batteries. The results show that the critical temperature of thermal runaway is between 40 degrees C and 60 degrees C under a 7.8 A charging current. Meanwhile, the average heating rate the of battery rises with the increase of environmental temperature. The initial thermal runaway temperature of batteries under environmental temperatures of 60 degrees C, 80 degrees C, and 100 degrees C is nearly 127 degrees C. The critical charging current of the thermal runaway also declines with the increase of the environmental temperature. The average heating rate of batteries at 20 degrees C, 40 degrees C, and 60 degrees C are basically equal, but the average heating rate of a battery at 100 degrees C is higher than that at 80 degrees C during the discharging process. During the charge discharge process, a better heat dissipation condition can ensure the lower heating rate of a battery. These results can provide an important basis for the safety design and storage of batteries to prevent fire and explosion accidents. (C) 2017 Elsevier Ltd. All rights reserved.

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