带旋转的精密高速机床主轴轴承的准静态和混合热弹流体动力学润滑行为耦合研究

Machines Pub Date : 2024-05-09 DOI:10.3390/machines12050325
Hao Liu, Yun Chen, Yi Guo, Yongpeng Shi, Dianzhong Li, Xing-Qiu Chen
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引用次数: 0

摘要

本研究提出了一种将准静态理论与混合热弹性流体动力润滑(mixed-TEHL)模型相结合的改进数值算法,用于研究高速旋转机床主轴轴承的机械性能和润滑性能。同时还考虑了润滑剂的非牛顿流体特性和非高斯表面粗糙度。此外,还考察了轴承在各种使用环境下的机械性能和润滑状态。结果表明,温度会降低润滑效率,进而对机械性能产生重大影响。牛顿流体或非牛顿流体的润滑方式对轴承工作状态的影响相对较小,而非高斯表面粗糙度会显著改变油膜厚度和温度。不同工作条件下的计算表明,工作参数(即轴向载荷、转速)将通过油膜厚度和温度的变化直接影响轴承的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Coupling Study on Quasi-Static and Mixed Thermal Elastohydrodynamic Lubrication Behavior of Precision High-Speed Machine Spindle Bearing with Spinning
In this work, a modified numerical algorithm that couples the quasi-static theory with the mixed thermal elastohydrodynamic lubrication (mixed-TEHL) model is proposed to examine the mechanical properties and lubrication performance of the spindle bearing that is used in a high-speed machine tool with spinning. The non-Newtonian fluid characteristics of the lubricant and the non-Gaussian surface roughness are also considered. Moreover, the mechanical properties and lubrication state of the bearing are examined in various service environments. The results indicate that the temperature reduces the lubrication efficiency, which in turn exerts a significant impact on the mechanical properties. The lubrication that either behaves in the manner of Newtonian or non-Newtonian fluid has a relatively negligible influence on the bearing working state, while the non-Gaussian surface roughness significantly alters the oil film thickness and temperature. Calculations with different operating conditions demonstrate that the operating parameters (i.e., axial load, rotation speed) will directly affect the performance of the bearings via the changes in the oil film thickness and the temperature.
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