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首页> 外文期刊>Journal of Sound and Vibration >Vibration reduction in a tilting rotor using centrifugal pendulum vibration absorbers
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Vibration reduction in a tilting rotor using centrifugal pendulum vibration absorbers

机译:使用离心摆式减振器减少倾斜转子中的振动

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This paper investigates vibration reduction in a rigid rotor with tilting, rotational, and translational motions using centrifugal pendulum vibration absorbers (CPVAs). A linearized vibration model is derived for the system consisting of the rotor and multiple sets of absorbers tuned to different orders. Each group of absorbers lies in a given plane perpendicular to the rotor rotation axis. Gyroscopic system modal analysis is applied to derive the steady-state response of the absorbers and the rotor to external, rotor-order, periodic forces and torques with frequency m Omega, where Omega is the mean rotor speed and m is the engine order (rotor-order). It is found that an absorber group with tuning order m is effective at reducing the rotor translational, tilting, and rotational vibrations, provided certain conditions are met. When the periodic force and torque are caused by N substructures that are equally spaced around the rotor, the rotor translational and tilting vibrations at order j are addressed by two absorber groups with tuning orders jN +/- 1. In this case, the rotor rotational vibration at order j can be attenuated by an absorber group with tuning order jN. The results show how the response depends on the load amplitudes and order, the rotor speed, and design parameters associated with the sets of absorbers, most importantly, their tuning, mass, and plane of placement. In the ideal case with zero damping and exact tuning of the absorber sets, the vibrations can be eliminated for a range of loads over which the linearized model holds. The response for systems with detuned absorbers is also determined, which is relevant to applications where small detuning is employed due to robustness issues, and to allow for a larger range of operating loads over which the absorbers are effective. The system also exhibits undesirable resonances very close to these tuning conditions, an issue that is difficult to resolve and deserves further investigation. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文研究了使用离心摆式减振器(CPVA)在具有倾斜,旋转和平移运动的刚性转子中的减振。得出了系统的线性振动模型,该模型由转子和调整为不同阶数的多组吸收器组成。每组吸收器都位于与转子旋转轴垂直的给定平面中。陀螺仪系统模态分析用于得出吸收器和转子对频率为m Omega的外,转子级,周期性力和转矩的稳态响应,其中Omega是平均转子速度,m是发动机级(转子-订购)。已经发现,在满足某些条件的情况下,调谐阶数为m的吸收器组可有效减少转子的平移,倾斜和旋转振动。当周期性的力和转矩是由在转子周围等距分布的N个子结构引起的时,通过调整量为jN +/- 1的两个减振器组来解决j阶的转子平移和倾斜振动。 j阶的振动可以通过调谐阶为jN的吸收器组来衰减。结果表明,响应如何取决于负载振幅和阶数,转子速度以及与吸收器组相关的设计参数,最重要的是它们的调谐,质量和放置平面。在零阻尼和吸收器组精确调整的理想情况下,可以消除线性化模型所保持的一系列负载的振动。还确定了带有失谐吸收器的系统的响应,这与由于鲁棒性问题而采用小失谐的应用有关,并考虑到吸收器有效的更大范围的工作负载。该系统还非常接近这些调谐条件,并表现出不希望的共振,这个问题难以解决,值得进一步研究。 (C)2016 Elsevier Ltd.保留所有权利。

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