首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >A hydrodynamic lubrication model and comparative analysis for coupled microgroove journal-thrust bearings lubricated with water
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A hydrodynamic lubrication model and comparative analysis for coupled microgroove journal-thrust bearings lubricated with water

机译:水流润滑模型及耦合微型轴颈推力轴承与水的比较分析

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摘要

The novelty of this study is to develop a hydrodynamic lubrication numerical model for coupled microgroove journal-thrust bearings (or coupled bearings) under water-lubricated condition. In the present model, the continuity of the hydrodynamic pressure and the fluid field (or coupled hydrodynamic effect) at common boundary is considered to reveal the mutual effect between the hydrodynamic behavior of the journal bearing and the thrust bearing. The lubrication performances of the coupled microgroove bearing with three bottom shapes, i.e., isosceles triangle, right triangle, and left triangle, are studied comparatively. Additionally, the effects of the microgroove depth on the lubrication performances of the coupled bearing are discussed. The present study reveals that the coupled hydrodynamic effect generated by the coupled bearing can improve the lubrication performance for both the journal and the thrust bearing. The microgroove with left triangle bottom shape yields the optimal lubrication performance as compared to the other two. There is an optimal groove depth that generates the maximum load capacity and the minimum friction coefficient for both the journal and the thrust bearing.
机译:本研究的新颖性是在水润滑条件下开发用于耦合微血管轴颈推力轴承(或耦合轴承)的流体动力润滑数值模型。在本模型中,在公共边界处的流体动力学和流体场(或耦合水动力学效应)的连续性被认为是揭示轴颈轴承和推力轴承的流体动力学行为之间的相互影响。相对研究,具有三个底部形状的耦合微型槽轴承的耦合微槽轴承的润滑性能,即等式三角形,右三角形和左三角形。另外,讨论了微血管深度对耦合轴承的润滑性能的影响。本研究表明,通过耦合轴承产生的耦合的流体动力学效果可以改善轴颈和推力轴承的润滑性能。与其他两个相比,带左三角形底部形状的微型槽会产生最佳的润滑性能。有一个最佳的凹槽深度,产生最大负载能力和轴颈和推力轴承的最小摩擦系数。

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