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具有电磁约束阻尼层梁的振动主动控制研究计算(英文)
引用本文:Niu Hongpan,Zhang Yahong,Zhang Xinong*,Xie Shilin MOE Key laboratory for Strength and Vibration,Department of Engineering Mechanics,School of Aerospace,Xi’an Jiaotong University,Xi’an ,China.具有电磁约束阻尼层梁的振动主动控制研究计算(英文)[J].中国航空学报,2008,21(2):115-124.
作者姓名:Niu Hongpan  Zhang Yahong  Zhang Xinong*  Xie Shilin MOE Key laboratory for Strength and Vibration  
作者单位:西安交通大学航天航空学院工程力学系/强度与振动教育部重点试验室,西安交通大学航天航空学院工程力学系/强度与振动教育部重点试验室,西安交通大学航天航空学院工程力学系/强度与振动教育部重点试验室,西安交通大学航天航空学院工程力学系/强度与振动教育部重点试验室 西安陕西 710049,西安陕西 710049,西安陕西 710049,西安陕西 710049
摘    要:This paper investigates vibration control of beam through electro-magnetic constrained layer damping (EMCLD) which consists of electromagnet layer, permanent magnet layer and viscoelastic damping layer. When the coil of the electromagnet is electrified with proper control strategy, the electromagnet can exert magnetic force opposite to the direction of structural deformation so that the structural vibration is attenuated. A mathematical model is developed based on the equivalent current method to calculate the electromagnetic control force produced by EMCLD. The governing equations of the system are obtained using Hamilton's Principle and then reduced with the assumed-mode method. A simulation on vibration control of a cantilever beam is conducted under the velocity proportional feedback to demonstrate the energy dissipation capability of EMCLD, and the beam system with the same parameter is experimented. The results of experiment and simulation are compared and the results show that the EMCLD is an effective means for suppressing modal vibration. The results also indicate that the beam system has better control performance for larger control current. The EMCLD method presented in this paper provides an applicable and efficient tool for the vibration control of structures.

关 键 词:电磁约束层阻尼  主动控制  振动控制  空气动力学
收稿时间:31 May 2007

Active Vibration Control of Beam Using Electro-magnetic Constrained Layer Damping
Niu , Zhang Yahong, Zhang ,Xie Shilin.Active Vibration Control of Beam Using Electro-magnetic Constrained Layer Damping[J].Chinese Journal of Aeronautics,2008,21(2):115-124.
Authors:Niu  Zhang Yahong  Zhang  Xie Shilin
Institution:

aMOE Key laboratory for Strength and Vibration, Department of Engineering Mechanics, School of Aerospace, Xi'an Jiaotong University, Xi'an 710049, China

Abstract:This paper investigates vibration control of beam through electro-magnetic constrained layer damping (EMCLD) which consists of electromagnet layer, permanent magnet layer and viscoelastic damping layer. When the coil of the electromagnet is electrified with proper control strategy, the electromagnet can exert magnetic force opposite to the direction of structural deformation so that the struc- tural vibration is attenuated. A mathematical model is developed based on the equivalent current method to calculate the electromagnetic control force produced by EMCLD. The governing equations of the system are obtained using Hamilton's Principle and then reduced with the assumed-mode method. A simulation on vibration control of a cantilever beam is conducted under the velocity proportional feedback to demonstrate the energy dissipation capability of EMCLD, and the beam system with the same parameter is experimented. The results of experiment and simulation are compared and the results show that the EMCLD is an effective means for suppressing modal vibration. The results also indicate that the beam system has better control performance for larger control current. The EMCLD method presented in this paper provides an applicable and efficient tool for the vibration control of structures.
Keywords:electro-magnetic constrained layer damping (EMCLD)  vibration control  active control
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