The wear characteristics of wet clutch in the DCT vehicle during the launching process

Qianqian Zhang, Man Chen, Biao Ma, Jianpeng Wu, Liang Yu

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

1 Citation (Scopus)

Abstract

In order to investigate the wear characteristics of wet clutch during the vehicle launching process, the experimental investigations and the dynamic analysis are conducted in the study. Firstly, the wet pin-on-disc experiment is designed to explore the wear behaviours of the wet friction pair. Based on the experimental results under various conditions, the wear amount is measured by the multielement oil analysis spectrometer and the corresponding wear coefficient is deduced according to the Archard laws. After that, the dynamic model of the Double Clutch Transmission (DCT) vehicle is established to study the wear condition of the wet clutch during the vehicle launching process. The experimental and simulation results indicate that, the increase of the slipping speed, the contact pressure and the temperature leads to the increase of the wear amount, while, for the wear coefficient, the slipping speed has little influence. During the vehicle launching process, the driver's gentle operation with light vehicle load will reduce the wear amount of the wet clutch and prolong its service life.

Original languageEnglish
Title of host publication6th International Conference on Fluid Flow, Heat and Mass Transfer, FFHMT 2019
PublisherAvestia Publishing
ISBN (Print)9781927877593
DOIs
Publication statusPublished - 2019
Event6th International Conference on Fluid Flow, Heat and Mass Transfer, FFHMT 2019 - Ottawa, Canada
Duration: 18 Jun 201919 Jun 2019

Publication series

NameInternational Conference on Fluid Flow, Heat and Mass Transfer
ISSN (Electronic)2369-3029

Conference

Conference6th International Conference on Fluid Flow, Heat and Mass Transfer, FFHMT 2019
Country/TerritoryCanada
CityOttawa
Period18/06/1919/06/19

Keywords

  • Dual clutch transmission
  • Friction and wear
  • Launching process
  • Pin-on-disc experiment
  • Wet clutch

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