Modelling of electromechanically actuated active differential wet-clutch dynamics

Author:

Ivanović V1,Deur J1,Herold Z1,Hancock M2,Assadian F3

Affiliation:

1. Faculty of Mechanical Engineering and Naval Architecture, University of Zagreb, Zagreb, Croatia

2. Jaguar Cars Ltd, Gaydon Engineering Centre, Banbury Road, Gaydon, Warwickshire, UK

3. Department of Automotive Engineering, School of Engineering, Cranfield University, Cranfield, Bedfordshire, UK

Abstract

The paper presents a lumped-parameter dynamic model of an electromechanically actuated wet clutch found in an active limited slip differential. The bond graph modelling technique is used to describe the multi-physical clutch system including the clutch actuator dynamics, the axial dynamics with the fluid film squeeze effect, the thermal dynamics, and the torque development dynamics with a multi-functional clutch friction coefficient static characteristic. Different variants of the individual subsystem models are considered, ranging from first-principle models to simplified and numerically more efficient models. The proposed models are parameterized and thoroughly validated on the basis of the experimental data collected by using an active differential and clutch test rig. The modelling results are used for the purpose of analysis of the clutch steady state and transient behaviour under various operating modes.

Publisher

SAGE Publications

Subject

Mechanical Engineering,Aerospace Engineering

Reference45 articles.

1. Hrovat D., Asgari J., Fodor M. Automotive mechatronic systems, techniques and applications, vol. 2 – transportations and vehicle systems (Ed. Leondes C. T.), 2000, pp. 1–98 (Gordon and Breach, New York).

2. Modeling and Analysis of Active Differential Dynamics

3. Application of active yaw control to vehicle dynamics by utilizing driving/breaking force

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