首页> 外文期刊>Journal of intelligent material systems and structures >Coil-based Electromagnetic Damper and Actuator for Vibration Suppression of Cantilever Beams
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Coil-based Electromagnetic Damper and Actuator for Vibration Suppression of Cantilever Beams

机译:基于线圈的电磁阻尼器和执行器,用于抑制悬臂梁的振动

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摘要

In this study, both an eddy current coil damper and an electromagnetic actuator were developed for the vibration suppression of a cantilever beam integrated with a copper coil and a permanent magnet. The control system for the vibration suppression of the electro-magneto-mechanically coupled beam that consists of a coil attached to an aluminum beam and a permanent magnet installed below the coil was proposed. Alternatively, the conductive coil can be passively and actively used as a damper and an actuator. The effects of various coil shapes including a cylindrical tube, a square tube and a circular sheet were investigated to determine optimal vibration suppression for the cantilever beam. The frequency response function of a beam with the theoretical model of the magnetic eddy current damping system was predicted and its accuracy was compared to the experimentally measured frequency response. Also, the results of the active control with a positive position feedback method were compared with those of the passive eddy current dampers with open and closed circuits. The experimental data showed that the tube type coils had much higher vibration suppression efficiency than the sheet type coil and the active vibration control strategy can be alternatively used to improve the electromagnetic damper system.
机译:在这项研究中,开发了涡流线圈阻尼器和电磁致动器,以抑制与铜线圈和永磁体集成在一起的悬臂梁的振动。提出了一种用于电磁-机械耦合梁的振动抑制的控制系统,该系统由一个连接到铝梁的线圈和一个安装在该线圈下方的永磁体组成。可替代地,导电线圈可以被动地和主动地用作阻尼器和致动器。研究了包括圆柱管,方管和圆形薄板在内的各种线圈形状的影响,以确定悬臂梁的最佳振动抑制效果。利用磁涡流阻尼系统的理论模型预测了梁的频率响应函数,并将其精度与实验测量的频率响应进行了比较。此外,将具有正位置反馈方法的主动控制的结果与具有开路和闭路的无源涡流阻尼器的结果进行了比较。实验数据表明,管式线圈比片式线圈具有更高的减振效率,可以采用主动振动控制策略来改进电磁阻尼器系统。

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