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Performance analysis of multi-leaf oil lubricated foil bearing

机译:多叶油润滑箔轴承的性能分析

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摘要

The traditional bearing applied in the turbo-pump for the hydraulic servo system is rolling element bearing. To satisfy the demand of the high rotating speed for turbo-pump, the oil lubricated foil bearing can be employed in the rotor system. For the working liquid of the servo system is oil and the rotor for the turbo pump is submerged in the hydraulic oil, the bearing has to operate in an oil-rich environment, where the air bearing cannot be employed. The theoretical analysis and numerical simulation are carried out in this study to investigate the static and dynamic characteristics of multi-leaf oil lubricated foil bearing. For the structure form of the multi-leaf foil bearing with five symmetrical arrangements, the foil deformation equation and the Reynolds equation are solved coupled by successive over relaxation method, where the Reynolds boundary condition is employed. Then the load capacity, lift-off speed and static equilibrium position are acquired. By deriving the dynamic deformation equation of the foil, the dynamic stiffness coefficients and damping coefficients are obtained based on the perturbation method. The effect of the rotating speed and perturbation frequency on dynamic characteristics is analyzed. It indicates that the load capacity of the multi-leaf foil bearing is smaller than that of the fixed geometry oil bearing without foil deformation, whereas the stability of the bearing is increased.
机译:用于液压伺服系统的涡轮泵中的传统轴承是滚动轴承。为了满足涡轮泵高转速的需求,可在转子系统中采用油润滑箔轴承。由于伺服系统的工作液体是机油,而涡轮泵的转子浸没在液压油中,因此轴承必须在富含机油的环境中运行,在这种环境中不能使用空气轴承。本研究进行了理论分析和数值模拟,以研究多叶油润滑箔轴承的静态和动态特性。对于具有五个对称布置的多叶箔轴承的结构形式,采用连续雷诺松弛法耦合了箔变形方程和雷诺方程,其中采用了雷诺边界条件。然后获得负载能力,提起速度和静态平衡位置。通过推导金属箔的动态变形方程,基于扰动方法获得了动态刚度系数和阻尼系数。分析了转速和扰动频率对动力特性的影响。这表明,多叶箔轴承的承载能力小于不带箔变形的固定几何形状油轴承的承载能力,而轴承的稳定性却得到了提高。

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