Effects of operating and material parameters on the thermal characteristics of a wet clutch

Based on the frictional mechanism of a wet clutch, frictional models of wet clutch engagement were established using the modified Reynolds equation and the elastic contact model between frictional pairs. Then, the heat flux models for the viscous shear and asperity friction were built, and the two-d...

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Main Authors: Zhigang Zhang, Ling Zou, Hang Liu, Yonglong Chen, Benzhu Zhang
Format: Article
Language:English
Published: SAGE Publishing 2021-07-01
Series:Advances in Mechanical Engineering
Online Access:https://doi.org/10.1177/16878140211034101
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spelling doaj-638b8fd2408f40ec8baae09d02b755832021-07-17T23:03:19ZengSAGE PublishingAdvances in Mechanical Engineering1687-81402021-07-011310.1177/16878140211034101Effects of operating and material parameters on the thermal characteristics of a wet clutchZhigang Zhang0Ling Zou1Hang Liu2Yonglong Chen3Benzhu Zhang4Ningbo Shenglong Group Co., Ltd, Ningbo, ChinaKey Laboratory of Advanced Manufacturing Technology for Automobile Parts, Ministry of Education, Chongqing University of Technology, Chongqing, ChinaKey Laboratory of Advanced Manufacturing Technology for Automobile Parts, Ministry of Education, Chongqing University of Technology, Chongqing, ChinaNingbo Shenglong Group Co., Ltd, Ningbo, ChinaChongqing Tsingshan Industrial Technology Center, Chongqing, ChinaBased on the frictional mechanism of a wet clutch, frictional models of wet clutch engagement were established using the modified Reynolds equation and the elastic contact model between frictional pairs. Then, the heat flux models for the viscous shear and asperity friction were built, and the two-dimensional transient thermal models for the separator plate, friction disk, and ATF heat convection model were deduced based on the heat transfer theory and conservation law of energy. Finally, the Runge–Kutta numerical method was used to solve the frictional and thermal models. The average temperature of the separator plate, friction disk, and ATF were calculated. The effects of operating and material parameters, such as applied pressure, initial angular velocity, friction lining permeability, surface combined roughness RMS, equivalent elastic modulus, and ATF flow, on the thermal characteristics of friction pairs and ATF during engagement, were studied. The simulation results show that the temperature characteristics of the separator plate, friction disk, and ATF depend mainly on the viscous shear and asperity friction heat flux, and that the operating and material parameters of the wet clutch also have significant impacts on the overall variation trend of the thermal characteristics of the separator plate, friction disk, and ATF.https://doi.org/10.1177/16878140211034101
collection DOAJ
language English
format Article
sources DOAJ
author Zhigang Zhang
Ling Zou
Hang Liu
Yonglong Chen
Benzhu Zhang
spellingShingle Zhigang Zhang
Ling Zou
Hang Liu
Yonglong Chen
Benzhu Zhang
Effects of operating and material parameters on the thermal characteristics of a wet clutch
Advances in Mechanical Engineering
author_facet Zhigang Zhang
Ling Zou
Hang Liu
Yonglong Chen
Benzhu Zhang
author_sort Zhigang Zhang
title Effects of operating and material parameters on the thermal characteristics of a wet clutch
title_short Effects of operating and material parameters on the thermal characteristics of a wet clutch
title_full Effects of operating and material parameters on the thermal characteristics of a wet clutch
title_fullStr Effects of operating and material parameters on the thermal characteristics of a wet clutch
title_full_unstemmed Effects of operating and material parameters on the thermal characteristics of a wet clutch
title_sort effects of operating and material parameters on the thermal characteristics of a wet clutch
publisher SAGE Publishing
series Advances in Mechanical Engineering
issn 1687-8140
publishDate 2021-07-01
description Based on the frictional mechanism of a wet clutch, frictional models of wet clutch engagement were established using the modified Reynolds equation and the elastic contact model between frictional pairs. Then, the heat flux models for the viscous shear and asperity friction were built, and the two-dimensional transient thermal models for the separator plate, friction disk, and ATF heat convection model were deduced based on the heat transfer theory and conservation law of energy. Finally, the Runge–Kutta numerical method was used to solve the frictional and thermal models. The average temperature of the separator plate, friction disk, and ATF were calculated. The effects of operating and material parameters, such as applied pressure, initial angular velocity, friction lining permeability, surface combined roughness RMS, equivalent elastic modulus, and ATF flow, on the thermal characteristics of friction pairs and ATF during engagement, were studied. The simulation results show that the temperature characteristics of the separator plate, friction disk, and ATF depend mainly on the viscous shear and asperity friction heat flux, and that the operating and material parameters of the wet clutch also have significant impacts on the overall variation trend of the thermal characteristics of the separator plate, friction disk, and ATF.
url https://doi.org/10.1177/16878140211034101
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