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首页> 外文期刊>Journal of intelligent material systems and structures >Actively lubricated hybrid journal bearings based on magnetic fluids for high-precision spindles of machine tools
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Actively lubricated hybrid journal bearings based on magnetic fluids for high-precision spindles of machine tools

机译:基于磁性流体的主动润滑混合轴颈轴承,用于机床的高精度主轴

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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 < epsilon < 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.
机译:本文报道的研究工作集中于使用磁性流体作为活性润滑剂来改善混合轴颈轴承的性能,并应用于高精度机床。在两种情况下都使用磁流变流体的Herschel-Bulkley模型,通过雷诺方程的数值计算和流体动力学计算来优化原型设计。对该液体(LORD Corp. MRF 122-2ED)进行了详细的实验表征。轴颈轴承的流体力学效果得到改善,其承载能力和刚度提高了50%,主要是在轴偏心率的一半(0.4

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