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Analysis of Heating Performances for Ultra-High Speed Electric Spindle Bearings Based on the Energy Theory of TEHL in Point Contact State

机译:基于点接触状态的TEHL能量理论的超高速电主轴轴承加热性能分析

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To analyze the lubricating state and the heating performances of the spindle bearings in ultra-high speed electric spindles, taken the characteristics of oil-air lubrication into account and based on the theories about rolling bearing dynamics and thermal elasto-hydrodynamic lubrication in point contact state, a model was built with the energy method for analyzing the heating performances the ball elements on both raceways in spindle bearings. An equation was derived for calculating the total quality of heat produced in a bearing. The influences of some basic factors such as the running speed, the axial preload, the oil viscidity, the design contact angle of bearing, and the ball materials and so on are analyzed on the heating performances in a bearing. The results show that it is easy to come into being elasto-hydrodynamic lubrication state for a bearing running in an ultra high-speed and lubricated by oil-air. It is also shown that the higher speed is, the more the quality of heat produced inside the oil films in the elasto-hydrodynamic lubrication state will be, which will bring the bearings working conditions worse.
机译:为了分析超高速电动主轴中轴承轴承的润滑状态和加热性能,取得了对滚动轴承动力学和热弹性 - 流体动力学润滑的原因考虑了油空气润滑的特点,并在点接触状态下,采用能量方法建立了一种模型,用于分析加热性能在主轴轴承中的滚道上的球元件。导出了用于计算轴承中产生的热量的总质量等式。在轴承中的加热性能下分析了一些基本因素,如运行速度,轴向预载,油粘度,轴承设计接触角和球材料等的影响。结果表明,轴承以超高速运行并通过油气润滑的轴承仍然易于作为弹性 - 流体动力润滑状态。还表明,较高的速度是,弹性流体动力润滑状态的油膜内产生的热量越多,它将带来轴承工作条件。

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