2012World Automation CongressRequires access

Simulation study of the Magnetorheological Fluid damper in the semi-active suspension system

Jianfeng Wang, Chuanxue Song

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Abstract

This paper first describes the working principle of vehicle Magnetorheological Fluid shock absorber. Then, the mechanical model of magnetorheological fluid (MRF) damper and passive damper were established and analyzed using simulation method, respectively. The result shows that the MRF damper can eliminate the resonance peak, reduce the natural frequency of the system and improve vehicle comfortability.

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What this paper is about

This paper first describes the working principle of vehicle Magnetorheological Fluid shock absorber. Then, the mechanical model of magnetorheological fluid (MRF) damper and passive damper were established and analyzed using simulation method, respectively. The result shows that the MRF damper can eliminate the resonance peak, reduce the natural frequency of the system and improve vehicle comfortability.

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Available abstract

This paper first describes the working principle of vehicle Magnetorheological Fluid shock absorber. Then, the mechanical model of magnetorheological fluid (MRF) damper and passive damper were established and analyzed using simulation method, respectively. The result shows that the MRF damper can eliminate the resonance peak, reduce the natural frequency of the system and improve vehicle comfortability.

Key concepts: Magnetorheological fluid, Damper, Shock absorber, Magnetorheological damper, Suspension (topology), Natural frequency, Shock (circulatory), Materials science

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