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STUDY ON ROTOR VIBRATION CONTROL BY A SHEAR MODE MR FLUID DAMPER

机译:剪切模式MR流体阻尼器转子振动控制研究

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A shear mode magnetorheological (MR) fluid damper and its experimental application for vibration control in a single-disk cantilevered rotor are introduced. The theoretical model of the rotor system is established, and the responses of the rotor system are simulated and compared with the experimental results. It is found that as the Coulomb friction of the damper is increased, the vibration amplitude of the rotor system is decreased near the initial critical speeds, but is increased in a speed range between the first and the second initial critical speeds. At the same time, the first critical speed of the rotor is increased clearly, but the second critical speed disappears. A simple on-off control method is proposed to obtain the best control effect for rotor vibration in the whole speed range.
机译:介绍了剪切模式磁流变学(MR)流体阻尼器及其在单盘悬臂转子中的振动控制的实验应用。建立了转子系统的理论模型,并与实验结果进行了模拟旋转系统的响应。结果发现,随着阻尼器的库仑摩擦增加,转子系统的振动幅度在初始临界速度附近降低,但是在第一和第二初始临界速度之间的速度范围内增加。同时,转子的第一临界速度显然增加,但第二临界速度消失。提出了一种简单的开关控制方法,以获得整个速度范围内转子振动的最佳控制效果。

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