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Rotordynamics Performance of Hybrid Foil Bearing Under Forced Vibration Input

机译:强迫输入下混合箔轴承的转子动力学性能。

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摘要

Foil bearings (FB) are one type of hydrodynamic air/gas bearings but with a compliant bearing surface supported by structural material that provides stiffness and damping to the bearing. The hybrid foil bearing (HFB) in this paper is a combination of a traditional hydrodynamic foil bearing with externally pressurized air/gas supply system to enhance load capacity during the start and to improve thermal stability of the bearing. The HFB is more suitable for relatively large and heavy rotors where rotor weight is comparable to the load capacity of the bearing at full speed and extra air/gas supply system is not a major added cost. With 4448-22,240 N thrust class turbine aircraft engines in mind, the test rotor is supported by HFB in one end and duplex rolling element bearings (REB) in the other end. This paper presents experimental work on HFB with diameter of 102 mm performed at the U.S. Air force Research Laboratory (AFRL). Experimental works include: measurement of impulse response of the bearing to the external load corresponding to rotor's lateral acceleration of 5.55g, forced response to external subsyn-chronous excitation, and high-speed imbalance response. A nonlinear rotordynamic simulation model was also applied to predict the impulse response and forced subsyn-chronous response. The simulation results agree well with the experimental results. Based on the experimental results and subsequent simulations, an improved HFB design is also suggested for higher impulse load capability up to 10 g and rotordynamics stability up to 30,000 rpm under subsynchronous excitation.
机译:铝箔轴承(FB)是流体动力空气/气体轴承的一种类型,但其柔顺的轴承表面由结构材料支撑,从而为轴承提供刚度和阻尼。本文中的混合箔轴承(HFB)是传统的流体箔轴承与外部加压空气/气体供应系统的组合,以增强启动过程中的负载能力并改善轴承的热稳定性。 HFB更适用于相对较大和较重的转子,在这些转子中,转子的重量与全速时轴承的负载能力相当,而额外的空气/气体供应系统并不是主要的增加成本。考虑到4448-22240 N推力级涡轮飞机发动机,测试转子的一端由HFB支撑,另一端由双滚动元件轴承(REB)支撑。本文介绍了在美国空军研究实验室(AFRL)上进行的直径为102 mm的HFB的实验工作。实验工作包括:测量轴承对外部负载的冲激响应(对应于转子的横向加速度5.55g),对外部次同步励磁的强制响应以及高速不平衡响应。非线性转子动力学仿真模型也被用于预测冲激响应和强迫次同步响应。仿真结果与实验结果吻合良好。根据实验结果和随后的模拟,还提出了改进的HFB设计,以在次同步励磁下实现高达10 g的更高脉冲负载能力和高达30,000 rpm的转子动力学稳定性。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2018年第1期|012507.1-012507.12|共12页
  • 作者单位

    Mechanical and Aerospace Engineering, University of Texas at Arlington, Arlington, TX 76019-0018;

    Aerospace System Directorate, AFRL, Wright Patterson AFB1790 Loop Road, Dayton, OH 45433;

    Aerospace System Directorate, AFRL, Wright Patterson AFB1790 Loop Road, Dayton, OH 45433;

    Aerospace System Directorate, AFRL, Wright Patterson AFB1790 Loop Road, Dayton, OH 45433;

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