推力型箔式轴承在液氮中润滑性能的理论评估

Hang Dou, Tao Jiang, Longgui He, Shuo Cheng, Xiaoliang Fang, Jimin Xu
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摘要

可重复使用液体火箭涡轮泵的发展逐渐凸显了滚动轴承的缺点,尤其是长寿命与高转速之间的矛盾。因此,探索一种磨损寿命长、稳定性高的可行轴承方案来替代现有的滚动轴承至关重要。本研究采用液氮模拟液体火箭涡轮泵的超低温环境,对推力型箔片轴承在液氮中的润滑性能进行了理论评估。建立了凹凸箔结构的连杆弹簧模型和顶箔结构的薄板有限元模型。采用有限差分法、牛顿-拉斐森迭代法和有限元法等方法分析了轴承的静态和动态特性。详细分析了转速、流体膜厚度、推力盘倾斜角和凸起箔界面摩擦系数等因素对推力型箔轴承静态和动态特性的影响。研究结果表明,推力型箔轴承具有良好的承载能力和较低的摩擦功耗。箔结构的自适应变形增加了流体膜厚度,防止了转子轴颈与轴承表面直接接触产生的干摩擦。当推力盘倾斜时,轴承的直接平移刚度和阻尼系数不会发生显著变化,从而确保了系统的稳定性。根据这项研究的结果,推力型箔片轴承的优异性能特点使其有望替代滚动轴承,用于开发可重复使用的液体火箭涡轮泵。
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Theoretical Evaluation of Lubrication Performance of Thrust-Type Foil Bearings in Liquid Nitrogen
The development of reusable liquid rocket turbopumps has gradually highlighted the disadvantages of rolling bearings, particularly the contradiction between long service life and high rotational speed. It is critical to explore a feasible bearing scheme offering a long wear life and high stability to replace the existing rolling bearings. In this study, liquid nitrogen is adopted to simulate the ultra-low temperature environment of liquid rocket turbopumps, and theoretical evaluations of the lubrication performance of thrust-type foil bearings in liquid nitrogen are conducted. A link-spring model for the bump foil structure and a thin-plate finite element model for the top foil structure are established. The static and dynamic characteristics of the bearings are analyzed using methods including the finite difference method, the Newton–Raphson iteration method, and the finite element method. Detailed analysis includes the effects of factors such as rotational speed, fluid film thickness, thrust disk tilt angle, and the friction coefficient of the bump foil interface on the static and dynamic characteristics of thrust-type foil bearings. The research results indicate that thrust-type foil bearings have a good load-carrying capacity and low frictional power consumption. The adaptive deformation of the foil structure increases the fluid film thickness, preventing dry friction due to direct contact between the rotor journal and the bearing surface. When faced with thrust disk tilt, the direct translational stiffness and damping coefficient of the bearing do not undergo significant changes, ensuring system stability. Based on the results of this study, the exceptional performance characteristics of thrust-type foil bearings make them a promising alternative to rolling bearings for the development of reusable liquid rocket turbopumps.
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