TY - GEN
T1 - Thermal Behavior of Multi-Conical Wet Clutch based on Combined Wear Law
AU - Wang, Yanzhong
AU - Dou, Delong
AU - Meng, Xiangwen
N1 - Publisher Copyright:
© 2021 ACM.
PY - 2021/6/25
Y1 - 2021/6/25
N2 - The temperature plays a vital role in the tribology properties and failures of scuffing and excessive wear during the engagement of wet clutch. The contact pressure distribution and friction heat flux have been calculated based on the combined wear law of the conical joint, and a three-dimensional transient thermal analysis finite element (FE) model with the detailed structure for the multi-conical friction plate is established. The influence of different operating conditions on the highest transient temperature of friction plate is analyzed, and the temperature of the specified location and the radial distribution are given. The results show that the highest temperature appears near the middle of the engagement period and locates at the edge line of the cone top. The temperature of inner conical surface is higher than that of the outer conical surface.
AB - The temperature plays a vital role in the tribology properties and failures of scuffing and excessive wear during the engagement of wet clutch. The contact pressure distribution and friction heat flux have been calculated based on the combined wear law of the conical joint, and a three-dimensional transient thermal analysis finite element (FE) model with the detailed structure for the multi-conical friction plate is established. The influence of different operating conditions on the highest transient temperature of friction plate is analyzed, and the temperature of the specified location and the radial distribution are given. The results show that the highest temperature appears near the middle of the engagement period and locates at the edge line of the cone top. The temperature of inner conical surface is higher than that of the outer conical surface.
KW - combined wear law
KW - contact pressure distribution
KW - multi-conical wet clutch
KW - rotation frictional heat
KW - transient thermal analysis
UR - https://www.scopus.com/pages/publications/85117881902
U2 - 10.1145/3474963.3474990
DO - 10.1145/3474963.3474990
M3 - 会议稿件
AN - SCOPUS:85117881902
T3 - ACM International Conference Proceeding Series
SP - 195
EP - 202
BT - ICCMS 2021 - Proceedings of the 13th International Conference on Computer Modeling and Simulation
PB - Association for Computing Machinery
T2 - 13th International Conference on Computer Modeling and Simulation, ICCMS 2021
Y2 - 25 June 2021 through 27 June 2021
ER -