Kinematic and Dynamic Analysis for a New MacPherson Strut Suspension System

Author:

Dehbari S.1,Marzbanrad J.1

Affiliation:

1. Vehicle Dynamical Systems Research Laboratory , School of Automotive Engineering , Iran University of Science and Technology , Tehran , Iran

Abstract

Abstract The present paper undertakes kinematic and dynamic analysis of front suspension system. The investigated model is a full-scale Macpherson which is a multibody system. Two degree of freedom model is considered here to illustrate the vertical displacement of sprung mass and unsprung mass with using displacement matrix. Ride and handling parameters including displacement of sprung and unsprung masses, camber/caster angle, and track changes are derived from the relationships. Moreover, geometrical model and equations are validated by Adams/Car software. The kinematic and dynamic results have been compared in both analytical and numerical outputs for verification. The proposed analytical model shows less than 5% differences with a complicated multibody model.

Publisher

Walter de Gruyter GmbH

Subject

General Medicine

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4. Sharifi, M., Shahriari, B., Bagheri, A.: Optimization of Sliding Mode Control for a Vehicle Suspension System via Multi-objective Genetic Algorithm with Uncertainty, Journal of Basic and Applied Scientific Research, 2012.

5. Marzbanrad, J., Zahabi, N.: H∞ Active Control of a Vehicle Suspension System Excited by Harmonic and Random Roads, Mechanics and Mechanical Engineering, 21(1), 171–180, 2017.

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