首页> 外文期刊>Journal of vibration and control: JVC >Vibration analysis of a rotor supported on magnetorheological squeeze film damper with short bearing approximation: A contrast between short and long bearing approximations
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Vibration analysis of a rotor supported on magnetorheological squeeze film damper with short bearing approximation: A contrast between short and long bearing approximations

机译:短轴承近似磁流变挤压膜阻尼器支撑的转子的振动分析:短期和长轴近似之间的对比度

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摘要

Squeeze film dampers are widely used to reduce the vibration of rotating systems. Using magnetorheological fluid in these dampers can lead to a variable-damping damper called Magnetorheological Squeeze Film Damper (MRSFD). Magnetorheological fluid viscosity alter under different values of magnetic field. The previous research have widely used long bearing approximation to derive the equations governing the hydrodynamic behavior of MRSFDs. In this paper, the behavior of MRSFDs has been studied using short bearing approximation. Next, the effects of MRSFDs on the dynamic behavior of a flexible rotor have been studied, using finite element method (FEM). Synchronous whirl motion has not been imposed on the system behavior, as an external assumption. Damper pressure distribution and forces, dynamic trajectories, eccentricity and the frequency response of the rotor are tools used to analyze the dynamic behavior of MRSFDs and rotor system. As the results show, it seems to be more precise to use short bearing approximation to analyze dampers with aspect ratios lower than a limit (especially L/D<1). Furthermore, by controlling electrical current one can control the dynamic behavior of a rotor, to avoid failure and damage. Finally, the whirl motion of the rotor was observed to remain synchronous, even when fluid forces are present.
机译:挤压膜阻尼器广泛用于减少旋转系统的振动。在这些阻尼器中使用磁流变流体可以导致称为磁流变挤压膜阻尼器(MRSFD)的可变阻尼阻尼器。磁流变流体粘度在磁场的不同值下改变。以前的研究广泛使用了长轴承近似,以导出控制MRSFDS的流体动力学行为的方程。在本文中,使用短轴承近似研究了MRSFDS的行为。接下来,使用有限元方法(FEM)研究了MRSFDS对柔性转子动态行为的影响。同步旋转运动未施加在系统行为上,作为外部假设。阻尼压力分布和力,动态轨迹,偏心和转子的频率响应是用于分析MRSFDS和转子系统的动态行为的工具。结果表明,使用短轴承近似似乎更精确地分析低于极限的宽高比(特别是L / D <1)。此外,通过控制电流可以控制转子的动态行为,以避免失败和损坏。最后,即使存在流体力,也观察到转子的旋转运动保持同步。

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