Cooling and dynamic performance of electric vehicle traction motor adopting direct slot cooling method

Citations

WEB OF SCIENCE

21
Citations

SCOPUS

24

초록

Heat loss in an electric vehicle traction motor can be an important cause of insulation breakdown in coil winding and demagnetization of rotor magnets, resulting in a gradual or permanent malfunction of the motor. Thus, a motor cooling technique that immediately removes a large amount of heat released under extremely tough driving conditions is needed. In this study, the cooling and dynamic performances of two motors adopting the direct slot cooling (DSC) and water jacket cooling (WJC) methods were tested. The coolant in the DSC model directly cools the main heat source of the coil winding using the open slot of a motor stator as the cooling channel. Through thermal and electromagnetic simulations, the motor maximum and average motor tempera-tures under constant-current and real-driving conditions, marginal current density in a given coolant pumping power, and maximum torque and power of both motors are presented in detail.

키워드

Traction motor; Motor cooling; Direct slot cooling; Motor torque; Motor power
제목
Cooling and dynamic performance of electric vehicle traction motor adopting direct slot cooling method
저자
Park, Joonbum; Han, Kyoungseok; Choi, Hong-Soon; Park, Il Seouk
DOI
10.1016/j.icheatmasstransfer.2023.106970
발행일
2023-10
유형
Article
저널명
International Communications in Heat and Mass Transfer
권
147