Influence of structural parameters of friction pair on oil temperature rise in hydro-viscous clutch

Author:

Li Zhibao,Xie Fangwei,Sun Junyu,Zhu Jie,Zheng Xudong,Guo Xinjian,Wang Yun,Hua Yinqun

Abstract

Purpose The purpose of this paper is to study the temperature characteristics of hydro-viscous clutch with different structure of friction disks and obtain the distribution of film temperature. Design/methodology/approach The mathematical model of oil film between friction disks with radial grooves is established. Based on the flow rate equation, the temperature rise equation of oil film is deduced. Considering two-phase flow, the temperature distribution in the oil shear stage and the effects of the ratio of inner radius to outer radius on film temperature rise is studied by using computational fluid dynamics (CFD) technology. Findings The results show that when input speed is constant, the increase in the ratio of inner to outer radius leads to an increase in the peak temperature and the decrease in the ratio results in a larger increasing rate of temperature. Originality/value These results are of interest for the study of hydro-viscous drive and its applications. This study can also provide a theoretical basis for the mechanism of temperature rise by considering the effect of two-phase flow.

Publisher

Emerald

Subject

Surfaces, Coatings and Films,General Energy,Mechanical Engineering

Reference11 articles.

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2. Heat transfer in the gap of friction pairs in hydro-viscous drive;Journal of Zhejiang University (Engineering Science),2011

3. The design of friction pair of hydro-viscous drive;Machine Tools and Hydraulics,2006

4. Numerical simulation research on effect of oil groove forms on thermal behavior of friction pair in hydro-viscous clutch;Industrial Lubrication and Tribology,2016

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