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NUMERICAL INVESTIGATION ON THE MIXED LUBRICATION PERFORMANCE OF WATER- LUBRICATED COUPLED JOURNAL AND THRUST BEARINGS

机译:水润滑联轴器与止推轴承混合润滑性能的数值研究

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The mixed lubrication performance of water-lubricated coupled journal and thrust bearing (simplified as coupled bearing) is investigated by a developed numerical model. To ensure the continuity of hydrodynamic pressure and flow at the common boundary between the journal and thrust bearing, the conformal transformation is introduced to unify the solution domain of the Reynolds equation. In the presented study, the coupled effects between the journal and thrust bearing are discussed. The effects of the thrust bearing geometric film thickness on the mixed lubrication performance, including the load capacity, contact load and friction coefficient, of the journal bearing are investigated. And the effects of the journal bearing eccentricity ratio on the mixed lubrication performance of the thrust bearing are also investigated. The simulated results indicate the mutual effects between the journal and thrust bearing cannot be ignored in the coupled bearing system. The increasing thrust bearing geometric film thickness generates a decrease in load capacity of journal bearing. There exists an optimal eccentricity ratio of journal bearing that yields the minimum friction coefficient of the thrust bearing.
机译:通过建立的数值模型研究了水润滑的联轴器和推力轴承(简称为联轴器)的混合润滑性能。为了确保在轴颈和推力轴承之间的公共边界处的流体动力压力和流动的连续性,引入了共形变换以统一雷诺方​​程的解域。在提出的研究中,讨论了轴颈和推力轴承之间的耦合效应。研究了推力轴承几何膜厚对轴颈轴承的混合润滑性能(包括负载能力,接触负载和摩擦系数)的影响。并研究了轴颈轴承偏心比对推力轴承混合润滑性能的影响。仿真结果表明,在联轴器轴承系统中,轴颈和推力轴承之间的相互作用是不容忽视的。推力轴承几何膜厚度的增加会导致轴颈轴承的承载能力下降。轴颈轴承有一个最佳的偏心率,可以使推力轴承的摩擦系数最小。

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