上海大学学报(自然科学版) ›› 2023, Vol. 29 ›› Issue (3): 450-.doi: 10.12066/j.issn.1007-2861.2424

• • 上一篇    下一篇

快充方式下考虑热辐射效应的锂离子电池热-力耦合分析

林明钜, 锁要红, 赖光辉, 肖军文   

  1. (福州大学 机械工程及自动化学院, 福建 福州 350108)
  • 收稿日期:2022-06-16 出版日期:2023-06-30 发布日期:2023-07-12
  • 通讯作者: 锁要红 (1976—), 女, 教授, 博士, 研究方向为电化学热力耦合、电池的建模和分析等. E-mail:yaohongsuo@126.com
  • 基金资助:
    国家自然科学基金资助项目 (12272095)

Thermal-mechanical coupling analysis of lithium-ion batteries considering thermal radiation effect under fast charge

LIN Mingju, SUO Yaohong, LAI Guanghui, XIAO Junwen   

  1. (School of Mechanical Engineering and Automation, Fuzhou University, Fuzhou 350108, Fujian, China)
  • Received:2022-06-16 Online:2023-06-30 Published:2023-07-12

摘要: 锂离子电池充电过程中温升引起的热失控和过大的体积膨胀是电池爆炸、循环性能降低的主要原因. 同时, 充电效率低下使得充电时间过长. 为了提高充电效率并弄清锂离子电池充电过程中的温度和应力分布, 建立了快充方式下考虑热辐射效应的圆柱型锂离子电池热力耦合模型. 以 18650 锂离子电池为研究对象, 比较了快充和恒流充电方式下的充电效率、温度和应力分布, 探讨了初始温度、对流换热系数和热辐射系数对充电过程中电池温度、径向应力和环向应力的影响. 数值结果表明: 快充在电池温度和应力服役范围内减少了充电时间, 充电效率提高了 20.8%; 降低初始温度、提高对流换热系数或提高热辐射系数 3 种方案均可有效降低充电过程中锂离子电池的温度.

关键词: 快速充电, 热力耦合, 热辐射, 锂离子电池

Abstract: Thermal runaway and larger volume expansion caused by temperature rise are the main reasons for explosions and cycle performance degradation during the charge and discharge of lithium-ion batteries (LIBs). Meanwhile excessive charging time directly results in lower charging efficiency. In order to improve the charging efficiency and as-sess the temperature and stress distributions of LIBs, a thermo-mechanical coupling model of a cylindrical LIB with thermal radiation effect is developed during fast charging in this work. Then taking 18650 lithium-ion battery as the research object, the charging efficiency, temperature and stress distributions are compared between fast charge and galvanostatic operation. Finally, the influences of initial temperature, convective heat transfer and ther-mal radiation on the temperature, radial and hoop stresses of the battery during the charge are simulated, respectively. Numerical results show that the fast charge reduces the charge time within the service range of the temperature and stress, and the charge efficiency in-creases by 20.8%. The temperature of LIBs during the charge will be effectively reduced by reducing the initial temperature, or increasing the convective heat transfer coefficient, or improving the thermal radiation coefficient.

Key words: fast charge, thermo-mechanical coupling, thermal radiation, lithium-ion battery

中图分类号: