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Experimental Analysis of the Unbalance Response of Rigid Rotors Supported on Aerodynamic Foil Bearings

机译:气动箔轴承支承的刚性转子不平衡响应的实验分析。

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The paper presents the experimental unbalance response of two slightly different rigid rotors supported by aerodynamic foil bearings. Impulse (Pelton) turbines manufactured directly in the mass of the rotors (on the outer surface) entrain both rotors at rotation speeds comprised between 50 krpm and 100 krpm. The displacements in the two foil bearings are measured during coast down and are depicted as waterfall plots. They show typical nonlinear behavior, i.e., subsynchronous vibrations accompanying the synchronous component. The measurements clearly show that the subsynchronous components bifurcate or jump at typical rotation speeds (mostly rational fractions of the rotation speed). The nonlinear behavior of the rigid rotor supported on foil bearings is also emphasized by varying the added unbalance: with increasing unbalance the vibration spectrum becomes gradually more diverse as new subsynchronous vibrations appear. The experimental results are compared with very simplified theoretical predictions based on the assumption that the air film in the two bearings is infinitely stiff compared to the foil structure. The latter is characterized by a cubic stiffness and a structural damping coefficient. The comparisons show only a rough qualitative agreement.
机译:本文介绍了由气动箔轴承支撑的两个稍有不同的刚性转子的实验失衡响应。直接在转子质量中(外表面上)制造的脉冲式(佩尔顿)涡轮机以介于50 krpm和100 krpm之间的转速带动两个转子。在滑行下降期间测量两个箔轴承中的位移,并将其表示为瀑布图。它们显示出典型的非线性行为,即伴随同步分量的次同步振动。这些测量清楚地表明,次同步分量在典型转速(主要是转速的合理分数)处分叉或跳跃。通过改变增加的不平衡度也可以强调支撑在箔轴承上的刚性转子的非线性行为:随着不平衡度的增加,随着新的次同步振动的出现,振动频谱将变得越来越多样化。基于以下假设,将实验结果与非常简化的理论预测进行了比较,即两个轴承中的气膜与箔结构相比具有无限的刚性。后者的特征在于立方刚度和结构阻尼系数。比较仅显示出大致的定性一致性。

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  • 来源
    《Journal of Vibration and Acoustics》 |2015年第6期|061014.1-061014.11|共11页
  • 作者单位

    Hutchinson Stop-Choc Ltd., Banbury Avenue, Slough SL1 4LR, UK;

    Fellow ASME Institut PPRIME, UPR CNRS 3346, Universite de Poitiers, ISAE ENSMA SP2MI, 11. Bd. Pierre et Marie Curie, Futuroscope 86962, Chasseneuil Cedex, France;

    SNECMA, Space Engine Division, Foret de Vernon-BP 802, Vernon 27208, France;

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  • 入库时间 2022-08-18 03:00:28

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