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首页> 外文期刊>Journal of Tribology >Thermohydrodynamic Lubrication Analysis of Misaligned Plain Journal Bearing With Rough Surface
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Thermohydrodynamic Lubrication Analysis of Misaligned Plain Journal Bearing With Rough Surface

机译:粗糙表面未对中滑动轴承的热流体动力学润滑分析

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摘要

Journal misalignment exists generally in journal bearings. When severe journal misalignment takes place, the minimum film thickness of journal bearings reduces greatly. In this condition, the surface roughness, the oil viscosity-pressure relationship (VPR), and the thermal effect have obvious effects on hydrodynamic lubrication performance of misaligned bearings. In this paper, the oil film pressure, oil film temperature, load-carrying capacity, end leakage flow rate, frictional coefficient, and misalignment moment of a journal bearing with different angles of journal misalignment and surface roughness, and considering oil VPR and thermal effect, were calculated based on the generalized Reynolds equation, energy equation, and solid heat conduction equation. The results show that the oil VPR and surface roughness have a significant effect on the lubrication of misaligned journal bearings under large eccentricity ratio. The thermal effect will affect obviously the lubrication of misaligned journal bearings when eccentricity ratio and angle of journal misalignment are all large. In the present design, the size of the journal bearing is compact more and more, and the eccentricity ratio and angle of journal misalignment are usually large in operating conditions. Therefore, it is necessary to take the effects of journal misalignment, surface roughness, oil VPR, and thermal effect into account in the design and analyses of journal bearings.
机译:轴颈轴承通常存在轴颈未对准的情况。当严重的轴颈不对中时,轴颈轴承的最小膜厚会大大降低。在这种条件下,表面粗糙度,油的粘度-压力关系(VPR)和热效应对未对准轴承的流体动力润滑性能有明显的影响。本文研究了不同轴颈偏心角和表面粗糙度的轴颈轴承的油膜压力,油膜温度,承载能力,端漏流量,摩擦系数和偏心矩,并考虑了油的VPR和热效应是根据广义雷诺方程,能量方程和固体热传导方程计算的。结果表明,在大的偏心率下,油的VPR和表面粗糙度对未对中轴颈轴承的润滑具有显着影响。当偏心比和轴颈偏心角都很大时,热效应会明显影响轴颈轴承的润滑。在本设计中,轴颈轴承的尺寸越来越紧凑,并且在工作条件下,偏心比和轴颈未对准角度通常较大。因此,在轴颈轴承的设计和分析中必须考虑轴颈未对准,表面粗糙度,油VPR和热效应的影响。

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