Development of a Semi-Active Electromagnetic Vibration Absorber and Its Experimental Study

Author:

Liu Xueguang1,Feng Xiaoxiao,Shi Ye,Wang Ye,Shuai Zhijun2

Affiliation:

1. e-mail:

2. College of Power and Energy Engineering, Harbin Engineering University, Harbin 150001, China

Abstract

In this work, a semiactive electromagnetic vibration absorber has been developed based on a proposed electromagnetic stiffness adjustable spring model, which presents a new solution for adjusting stiffness in the field of vibration absorber devices. Simulation study on the electromagnetic spring has been performed to determine the structural parameter of the semiactive vibration absorber. An experimental rig is also built up to investigate its practical vibration control effectiveness. Firstly, the finite element model of the test bench is used to analyze its vibration characteristics. Then, the vibration reduction effect is predicted through the simulation analysis, from which the optimal control positions are found. Finally, the experimental studies are also conducted, and the results show that this semiactive electromagnetic vibration absorber has a frequency adjustment range from 21 Hz to 25 Hz, in which considerable vibration reduction from 5 dB to 10 dB can be achieved.

Publisher

ASME International

Subject

General Engineering

Reference14 articles.

1. Vibration Control of Two Degrees of Freedom System Using Variable Inertia Vibration Absorbers: Modeling and Simulation;J. Sound Vib.,2010

2. Passive, Adaptive and Active Tuned Vibration Absorbers—A Survey;ASME J. Mech. Des.,1995

3. Self-Sensing Active Vibration Control Using the Moving Coil Type Actuator;ASME J. Vibr. Acoust.,1995

4. Liu, J., 2005, “Design and Implementation of a Tunable Vibration Absorber and a Time-Delayed Vibration Absorber,” M.Sc. thesis, Lakehead University, Thunder Bay, Canada.

5. A Model-Free Control Structure for the On-Line Tuning of the Semi-Active Suspension of a Passenger Car;Mech. Syst. Signal Process.,2007

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