首页> 外文会议>19th Biennial Conference on Mechanical Vibration and Noise >EXPERIMENTAL STUDY ON VIBRATION PROPERTIES AND CONTROL OF SQUEEZE MODE MR FLUID DAMPER-FLEXIBLE ROTOR SYSTEM
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EXPERIMENTAL STUDY ON VIBRATION PROPERTIES AND CONTROL OF SQUEEZE MODE MR FLUID DAMPER-FLEXIBLE ROTOR SYSTEM

机译:挤压式MR流体阻尼器-柔性转子系统振动特性与控制的实验研究

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A squeeze mode MR fluid damper used for rotor vibration control is designed and manufactured, and the unbalance response properties and control method of a single-disk flexible rotor system supported by the damper are studied experimentally. It is found from the study that the magnetic pull force can decrease both the first critical speed and the critical amplitude; the oil film reaction force can decrease the amplitude at the undamped critical speeds, but increase the amplitude in a speed range between two undamped critical speeds. For the rotor system supported by a journal bearing and an MR fluid damper, it is possible to appear oil film instability as the increasing of the control current. The damper may have the best effect to make the vibration minimize within the range of all working speed by using on-off control method. The research show that the squeeze mode MR fluid damper has the advantages such as simple structure, clearly effectiveness, quick response, etc., and this kind of damper has a promising potential future in vibration control of flexible rotor systems.
机译:设计并制造了一种用于转子振动控制的挤压式MR流体阻尼器,并对阻尼器支撑的单盘柔性转子系统的不平衡响应特性和控制方法进行了实验研究。从研究中发现,磁拉力可以同时降低第一临界速度和临界振幅。油膜反作用力可以在无阻尼临界速度下减小振幅,但在两个无阻尼临界速度之间的速度范围内增加振幅。对于由轴颈轴承和MR流体阻尼器支撑的转子系统,随着控制电流的增加,可能会出现油膜不稳定性。通过使用开关控制方法,减振器可能具有最佳效果,可以使振动在所有工作速度范围内最小化。研究表明,挤压式MR流体阻尼器具有结构简单,效果明显,响应速度快等优点,在柔性转子系统的振动控制中具有广阔的应用前景。

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