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Analysis of a clutch damper using a discrete model
Authors:Kukhyun?Ahn,Jang?Moo?Lee,Wonsik?Lim,Yeong-?il?Park  author-information"  >  author-information__contact u-icon-before"  >  mailto:yipark@snut.ac.kr"   title="  yipark@snut.ac.kr"   itemprop="  email"   data-track="  click"   data-track-action="  Email author"   data-track-label="  "  >Email author
Affiliation:(1) School of Mechamical and Aerospace Engineering, Seoul National University, 151- 742 Seoul, Korea;(2) School of Mechamical Design and A utomation Engineering, Seoul National University of Technology, 172 Gongreung- dong, 139- 743 Noweon- gu, Seoul, Korea
Abstract:It is important to have a precise model for the clutch damper in order to simulate the entire powertrain of a vehicle and predict the responses of the system. In this research, we developed a new model in which the spring used in the clutch damper is divided into a finite number of elements. The model takes many unique properties of arc-shaped springs into consideration and is anticipated to be more precise than conventional simple models. With the model, two meaningful results were presented which can be utilized afterwards. One is a simulation concerning the peak torque transmitted via the clutch damper. The other is a simulation that shows the hysteretic characteristics of the clutch damper.
Keywords:Vehicle Powertrain  Clutch Damper  Multi-D.O.F. Discrete Model  Transient Torque  Hysteresis
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