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Whirl and whip: Rotor/bearing stability problems

机译:旋转和鞭打:转子/轴承稳定性问题

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摘要

A mathematical model of a symmetric rotor supported by one rigid and one fluid lubricated bearing is proposed. The rotor model is represented by generalized (modal) parameters of its first bending mode. The rotational character of the bearing fluid force is taken into account. The model yields synchronous vibrations due to rotor unbalance as a particular solution of the equations of motion, rotor/bearing system natural frequencies and corresponding self-excited vibrations known as oil whirl and oil whip. The stability analysis yields rotative speed threshold of stability. The model also gives the evaluation of stability of the rotor synchronous vibrations. In the first balance resonance speed region two more thresholds of stability are yielded. The width of this stability region is directly related to the amount of rotor unbalance. The results of the analysis based on this model stand with very good agreement with field observations of rotor dynamic behavior and the experimental results.
机译:提出了一种由一个刚性轴承和一个流体润滑轴承支撑的对称转子的数学模型。转子模型由其第一弯曲模式的广义(模态)参数表示。考虑到轴承流体力的旋转特性。该模型产生转子不平衡引起的同步振动,作为运动方程式,转子/轴承系统固有频率以及相应的自激振动(油甩和甩油)的特定解。稳定性分析得出稳定性的转速阈值。该模型还提供了转子同步振动稳定性的评估。在第一平衡共振速度区域中,产生了另外两个稳定性阈值。该稳定区域的宽度与转子不平衡量直接相关。基于该模型的分析结果与转子动态行为的现场观察和实验结果非常吻合。

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  • 作者

    Muszynska, A.;

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  • 年度 1985
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