考虑气蚀和湍流效应的错位微槽水润滑轴承混合润滑性能数值研究

Ziqi Chen, Ji Wang, Yujun Liu, Rui Li
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引用次数: 0

摘要

本研究提出了错位微槽水润滑轴承(WLB)的混合润滑模型。该模型考虑了气蚀和湍流的影响,以评估具有不同微槽形态的 WLB 的混合润滑性能。该模型采用控制体积法(CVM)对方程进行离散化处理,并使用 Fischer-Burmeister-Newton-Schur 方法对约束系统进行求解。通过对比已发表文献中的实验数据,证明了模型和方法的有效性。在此基础上,研究了转速、载荷和错位角对微槽 WLB 混合润滑性能的影响。数值结果表明,左三角形微槽的混合润滑性能最佳。在弹性流体动力润滑和混合润滑条件下,微槽形态存在显著差异。不过,这种差异会随着偏心角的增大而减小。通过选择适当的微槽形态,可以有效缓解轴颈不对中造成的边缘接触问题。这项研究为 WLB 的优化设计和混合润滑性能改进提供了有益的指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical study on mixed lubrication performance of misaligned microgroove water-lubricated bearings considering cavitation and turbulence effects
This study presents a mixed lubrication model for misaligned microgroove water-lubricated bearings (WLBs). The model considers the effects of cavitation and turbulence to assess the mixed lubrication performance of WLBs with various microgroove morphologies. The equations are discretized using the control volume method (CVM) and solved by using the Fischer–Burmeister–Newton–Schur method for dealing with the constrained system. A comparison of the experimental data from the published literature demonstrates the model and methodology's validity. On this basis, the effects of rotational speed, load, and misalignment angle on the mixed lubrication performance of microgroove WLBs are investigated. The numerical results indicate that the left-triangular microgroove exhibits the best-mixed lubrication performance. Under elastohydrodynamic lubrication and mixed lubrication conditions, there are significant discrepancies in microgroove morphology. However, this discrepancy diminishes with increasing misalignment angles. The edge contact problem resulting from journal misalignment can be efficiently mitigated by selecting the proper microgroove morphology. This study provides useful guidance for the optimal design and mixed lubrication performance improvement of WLBs.
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