热失控
电池组
核工程
电池(电)
热的
锂(药物)
材料科学
离子
化学
工程类
热力学
物理
功率(物理)
医学
有机化学
内分泌学
作者
Chenyu Zhang,Shilin Wang,Zhaoyang Liu,Yitong Li,Zida Sun,Huigen Jing,Xiangxiang Gao,Wanji Hu,Haoran Yang,Chengshan Xu,Yang Li,Junli Sun,Huaibin Wang,Xuning Feng
标识
DOI:10.1016/j.est.2024.111533
摘要
As the latest technology to promote the transformation of the new energy automobile industry, cell-to-pack (CTP) batteries have attracted unprecedented attention. However, there is a lack of research on the vented gases at the module level. In this paper, the thermal runaway propagation (TRP) behavior and vented gas characteristics of large modules of cell-to-pack batteries in closed space are studied experimentally. Results indicated that the total quantity of vented gas from module during thermal runaway (TR) process was 31.01 mol. The main components of vented gas are H2, CO2, CO, C2H4, and CH4. Of these, H2, CO2 and CO accounted for 32.85 %, 28.00 % and 25.25 % respectively. In addition, the calculated explosion limit of vented gases was 6.27 %–54.14 %. Therefore, the vented gas is prone to explosion, causing serious accidents. Compared with the open space system, the TRP temperature of the battery module in the closed nitrogen space system was higher and the mass loss was smaller. This study can provide reference for the prevention of TRP in large battery modules, and for evaluating the fire hazard of powered vehicles.
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