磁流变液
润滑
雷诺方程
流体静力平衡
流体轴承
磁力轴承
机械工程
润滑油
刚度
方位(导航)
材料科学
机床
工作(物理)
转子动力学
套管
偏心率(行为)
机械
计算机科学
工程类
结构工程
磁铁
雷诺数
物理
转子(电动)
政治学
湍流
人工智能
法学
阻尼器
量子力学
作者
Harkaitz Urreta,Gorka Aguirre,Pavel Kuzhir,Luís Norberto López de Lacalle
标识
DOI:10.1177/1045389x19862358
摘要
The research work reported in this article is focused on the use of magnetic fluids as active lubricant for improving the performance of hybrid journal bearings, with application to high-precision machine tools. Prototype design was optimized following numerical computation of Reynolds equation and computational fluid dynamics calculations, in both cases with Herschel–Bulkley model for the magnetorheological fluid. This fluid (LORD Corp. MRF 122-2ED) was experimentally characterized in detail. The improvement of the hydrodynamic effect in journal bearings was demonstrated with 50% higher load capacity and stiffness, mainly at half of shaft eccentricity 0.4 < ε < 0.7. Active hydrostatic lubrication achieved quasi-infinite stiffness within working limits (load and speed), at low frequencies. For high dynamic response, the active lubrication based on magnetorheological valves did not show good response. The feasibility of using magnetic fluids for developing high performance machine tool spindles and the validity of the simulation models was demonstrated experimentally.
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