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The Kinematics Analysis of Double Wishbone and Multi-link Suspension System Based on the Software of ADAMS/CAR

Faw Car

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Abstract

At first the model of double -wishbone front suspension and E-type multi-link independent rear suspension of a car are built in the ADAMS/CAR software,then kinematics simulation analysis is carried out.The result indicates that the configuration of the suspension system is reasonable and capability is perfect;the front suspension has fair good return-to-center capability,ease of steering manoeuvre,which is helpful to improve safety of the front wheel and reduce tire wear,whereas the rear suspension structural design is helpful to improve vehicle lateral stability and reduce tire wear.

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What this paper is about

At first the model of double -wishbone front suspension and E-type multi-link independent rear suspension of a car are built in the ADAMS/CAR software,then kinematics simulation analysis is carried out.The result indicates that the configuration of the suspension system is reasonable and capability is perfect;the front suspension has fair good return-to-center capability,ease of steering manoeuvre,which is helpful to improve safety of the front wheel and reduce tire wear,whereas the rear suspension structural design is helpful to improve vehicle lateral stability and reduce tire wear.

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Available abstract

At first the model of double -wishbone front suspension and E-type multi-link independent rear suspension of a car are built in the ADAMS/CAR software,then kinematics simulation analysis is carried out.The result indicates that the configuration of the suspension system is reasonable and capability is perfect;the front suspension has fair good return-to-center capability,ease of steering manoeuvre,which is helpful to improve safety of the front wheel and reduce tire wear,whereas the rear suspension structural design is helpful to improve vehicle lateral stability and reduce tire wear.

Key concepts: Suspension (topology), Kinematics, Engineering, Automotive engineering, Software, Mechanism (biology), Structural engineering, Computer science

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