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Research on Turbulent Lubrication of Misaligned Journal Bearing Considering the Axial Motion of Journal

机译:考虑期刊轴向运动的错位轴承湍流润滑研究

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摘要

Based on the coordinate transformation method, the generalized turbulent lubrication equation considering the axial motion of the journal is derived. The finite-difference method is used to solve the generalized turbulent lubrication equation. The variations of turbulent lubrication performance with axial displacement for different axial movement velocity of the journal, journal misalignment angle, and initial mid-plane eccentricity ratio are obtained. The results show that when the axial movement velocity of the journal increases, the mid-plane eccentricity ratio of the bearing and the minimum film thickness remain unchanged, the average Reynolds number, maximum film pressure, load capacity, frictional power, and side leakage increases. As the axial displacement of the journal increases, the greater the misalignment angle of the journal, the greater the degree of misalignment, maximum film pressure, load capacity, and misalignment moment of the bearing. The greater the initial mid-plane eccentricity ratio, the greater the degree of journal misalignment, maximum film pressure, load capacity, frictional power, and misalignment moment.
机译:基于坐标变换方法,考虑期刊轴向运动的广义湍流润滑方程。有限差分法用于解决广义湍流润滑方程。获得了轴向位移的湍流润滑性能的变化,获得了轴颈,轴颈未对准角度和初始中间偏心率的不同轴向移动速度。结果表明,当轴颈的轴向运动速度增加时,轴承的中间偏心率和最小膜厚度保持不变,平均雷诺数,最大膜压力,负载能力,摩擦力和侧泄漏增加。随着期刊的轴向位移增加,轴颈的错位角越大,未对准,最大薄膜压力,负载能力和轴承的未对准力矩越大。初始中间平面偏心率越大,期刊未对准程度越大,最大薄​​膜压力,负载能力,摩擦力和未对准时刻。

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