三元锂离子动力电池热失控及蔓延特性实验研究

Huai Bin Wang, Yang Li, Qin Zheng Wang, Zhi Ming Du, Xu Ning Feng*

*此作品的通讯作者

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摘要

Traction battery is the core component of the electric vehicle. To obtain longer driving ranges, conventional lithium-ion batteries with LiMn2O4, LiCoO2, and LiFePO4 cathodes were gradually replaced by LiNixCoyMn1−xyO2 batteries. With the increasing energy density and chemical activity of the lithium-ion traction battery, its thermal stability gradually decreases and safety hazards become increasingly serious. In recent years, thermal runaway incidents with traction batteries have occurred frequently at home and abroad, seriously disturbing the development of electric vehicles. Solving the safety problems associated with thermal runaway(TR) and thermal runaway propagation(TRP) of the lithium-ion battery is urgent. In this paper, TR and its propagation behavior, associated with a 42 A·h prismatic lithium-ion battery with a LiNi1/3Co1/3Mn1/3O2 cathode for electric vehicles, were studied under thermal abuse conditions on the cell and module levels. The results indicate that the maximum temperature approaches 920 ℃ inside the cell. The maximum temperature difference is up to 403 ℃ within the cell during TR, and the maximum temperature rise rate inside the cell is 40 ℃·s−1. The TRP time within a lithium-ion battery is 8-12 s under 100% state-of-charge (SOC), and the duration of the vent is 14-18 s. The temperature characteristics of the lithium-ion battery display large differences for the TRP test and adiabaticTR test. In a propagation test, the TR initiates from a forward surface toward the failure point, whereas under the adiabatic test the TR occurs simultaneously in the cell. More than 80% of the particles vented from the cell are LiF and graphite during the adiabatic test. Approximately 90% of the heat released by the TR is used for heating the residual and venting particles of the cell. The study offers a reference guide for the safety design and mitigation strategy of TRP in lithium-ion battery modules, and accident investigations of new energy vehicles.

投稿的翻译标题Experimental study on the thermal runaway and its propagation of a lithium-ion traction battery with NCM cathode under thermal abuse
源语言繁体中文
页(从-至)663-675
页数13
期刊Gongcheng Kexue Xuebao/Chinese Journal of Engineering
43
5
DOI
出版状态已出版 - 25 5月 2021

关键词

  • Energy storage
  • Lithium-ion battery
  • Safety
  • Thermal runaway
  • Thermal runaway propagation

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引用此

Wang, H. B., Li, Y., Wang, Q. Z., Du, Z. M., & Feng, X. N. (2021). 三元锂离子动力电池热失控及蔓延特性实验研究. Gongcheng Kexue Xuebao/Chinese Journal of Engineering, 43(5), 663-675. https://doi.org/10.13374/j.issn2095-9389.2020.10.27.002