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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Design and Performance Prediction of Hybrid Air Foil Thrust Bearings
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Design and Performance Prediction of Hybrid Air Foil Thrust Bearings

机译:混合翼型推力轴承的设计与性能预测

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摘要

Airfoil bearings (AFBs) have been recognized as the most promising for oil-free turbo-machinery. However, the applications of AFBs to the relatively large turbomachinery have many technical challenges due to limited load capacity and wear during start/stops. A hybrid airfoil bearing (HAFB), which combines the benefits ofAFB and hydrostatic air bearing, was introduced earlier by the authors, and the experimental studies showed much larger load capacity at low speeds and much lesser friction torque during start/stop than hydrodynamic counterpart. The benefit of HAFB was recognized through the experimental studies, and the concept of hybrid operation was further developed to thrust air foil bearings. This paper presents novel design features of the hybrid air foil thrust bearing (HAFTB) with radially arranged bump foils and preformed Rayleigh step contour, and presents simulated static and dynamic characteristics of the HAFTB. A 2D thin plate equation in cylindrical coordinate was solved with the finite difference method for the prediction of the top foil deflection. Parametric studies were performed to evaluate the effect of various design parameters on the static and dynamic performances of HAFTB. At low speeds, a design with orifice located at the center of land region showed the highest load capacity, while a design with orifice located near the leading edge of land region showed the highest load capacity at high speeds. Direct and coupled bearing coefficients were also calculated for various operating conditions. The direct stiffness increases with supply pressure but the direct damping decreases with supply pressure. In addition, typical hardening effect of gas film accompanying increase of stiffness and decrease of damping was predicted in high frequency excitations. 【Keywords】airfoil thrust bearing, hydrostatic, hybrid, oil-free turbomachinery
机译:机翼轴承(AFB)被公认为是无油涡轮机械中最有前途的轴承。然而,由于有限的负载能力和启动/停止过程中的磨损,将AFB应用于较大的涡轮机械存在许多技术挑战。作者在较早的时候就提出了一种混合翼型轴承(HAFB),它结合了AFB和静压空气轴承的优点,并且实验研究表明,与流体力学相比,低速时的负载能力大得多,起/停过程中的摩擦扭矩小得多。 HAFB的益处已通过实验研究得到认可,并且混合动力运行的概念进一步发展为推力空气箔轴承。本文介绍了带有径向布置的凸点箔和预先形成的瑞利阶梯轮廓的混合式空气箔推力轴承(HAFTB)的新颖设计特征,并给出了HAFTB的静态和动态特性。使用有限差分法求解了圆柱坐标下的二维薄板方程,以预测顶箔的挠度。进行了参数研究,以评估各种设计参数对HAFTB静态和动态性能的影响。在低速下,孔口位于陆地区域中心的设计显示出最高的负载能力,而在孔口位于陆地区域前沿附近的设计在高速下显示出最高的负载能力。还针对各种工况计算了直接和耦合的轴承系数。直接刚度随供应压力而增加,而直接阻尼随供应压力而降低。另外,在高频激励下,预见到气膜典型的硬化作用,伴随着刚度的增加和阻尼的减小。 【关键词】翼型推力轴承;静液压;混合动力;无油涡轮机械

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    Donghyun Lee; Daejong Kim;

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    Mechanical and Aerospace Engineering,University of Texas at Arlington,500 West 1st Street,Arlington, TX 76019;

    Mechanical and Aerospace Engineering,University of Texas at Arlington,500 West 1st Street,Arlington, TX 76019;

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