TY - JOUR
T1 - Experimental investigation on immersion liquid cooled battery thermal management system with phase change epoxy sealant
AU - Li, Xinxi
AU - Deng, Jian
AU - Huang, Qiqiu
AU - Zhang, Guoqing
AU - Chen, Kai
AU - Wang, Yongzhen
N1 - Publisher Copyright:
© 2022 Elsevier Ltd
PY - 2022/12/31
Y1 - 2022/12/31
N2 - To improve the working performance of the lithium-ion battery in continuous operation under water conditions, a novel immersion liquid cooled battery thermal management system (BTMS) with epoxy sealant based composite phase change (ESPE) is designed for lithium-ion batteries. Considering the traditional liquid cooling systems with complex auxiliary equipment, the battery module with ESPE exhibits an excellent cooling effectiveness and displays long-term corrosion resistance performance. The thermal performances of epoxy sealant with or without the addition of paraffin, expanded graphite are compared, respectively. The experimental results indicate that ESPE exhibits excellent waterproof and thermal management performance. Even during 3C charge and discharge cycle, the maximum temperature and the maximum temperature difference can be maintained at 42 °C and 2 °C, respectively. With these prominent performances, the designed BTMS with respect to excellent waterproof and prominent thermal management performances can significantly reduce the unnecessary power consumption of liquid cooling and provide insights into the passive BTMS.
AB - To improve the working performance of the lithium-ion battery in continuous operation under water conditions, a novel immersion liquid cooled battery thermal management system (BTMS) with epoxy sealant based composite phase change (ESPE) is designed for lithium-ion batteries. Considering the traditional liquid cooling systems with complex auxiliary equipment, the battery module with ESPE exhibits an excellent cooling effectiveness and displays long-term corrosion resistance performance. The thermal performances of epoxy sealant with or without the addition of paraffin, expanded graphite are compared, respectively. The experimental results indicate that ESPE exhibits excellent waterproof and thermal management performance. Even during 3C charge and discharge cycle, the maximum temperature and the maximum temperature difference can be maintained at 42 °C and 2 °C, respectively. With these prominent performances, the designed BTMS with respect to excellent waterproof and prominent thermal management performances can significantly reduce the unnecessary power consumption of liquid cooling and provide insights into the passive BTMS.
KW - Battery thermal management system
KW - Epoxy sealant
KW - Immersion cooling system
KW - Phase change material
KW - Thermal performance
UR - http://www.scopus.com/inward/record.url?scp=85139084921&partnerID=8YFLogxK
U2 - 10.1016/j.ces.2022.118089
DO - 10.1016/j.ces.2022.118089
M3 - Article
AN - SCOPUS:85139084921
SN - 0009-2509
VL - 264
JO - Chemical Engineering Science
JF - Chemical Engineering Science
M1 - 118089
ER -