首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Precision design of hydrostatic thrust bearing in rotary table and spindle
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Precision design of hydrostatic thrust bearing in rotary table and spindle

机译:旋转台和主轴静压推力轴承精度设计

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According to the increasing needs of rotary table and spindle to satisfy high-precision machining requirements, the accuracy of rotary table and spindle becomes an important issue due to the error averaging effect of hydrostatic thrust bearing. The objective of this study is to research a methodology to guide the precision design of hydrostatic thrust bearing in rotary table and spindle. A run-out error model based on error averaging effect is established using the Reynolds equation, pressure boundary conditions, flux continuity equations of pad and dynamic equations of shaft. The axial run-out error and angular error are calculated considering perpendicularity error and flatness error of the components. The simulation results show that the two perpendicularity errors between axis line and thrust bearing bushing surface have same direction, and the axial run-out error could reach to the maximum values. Also, the flatness error of thrust bearing bushing surface has a big influence on axial run-out error. Following the outcomes, the precision design of hydrostatic thrust bearing was conducted. The axial run-out errors of rotary table and spindle with hydrostatic thrust bearing were experimentally studied, and the results have good coherence to the simulation data. The run-out error model is demonstrated to be an effective approach to guide the precision design of hydrostatic thrust bearing in other rotary tables and spindles.
机译:根据旋转台和主轴的不断增加,满足高精度加工要求,旋转台和主轴的精度是由于静压推力轴承的误差平均效果的重要问题。本研究的目的是研究一种方法,以指导旋转台和主轴中静压推力轴承精度设计。使用雷诺等式,压力边界条件,垫和动态方程的焊盘和动态方程来建立基于误差平均效应的误差模型。考虑组件的垂直误差和平坦度误差来计算轴向射流误差和角度误差。仿真结果表明,轴线和推力轴承衬套表面之间的两个垂直误差具有相同方向,并且轴向射流误差可能达到最大值。而且,推力轴承衬套表面的平坦度误差对轴向射流误差具有很大的影响。在结果之后,进行了静压推力轴承的精度设计。实验研究了旋转台和带有静压推力轴承的旋转台和主轴的轴向耗尽误差,结果对模拟数据具有良好的相干性。耗尽误差模型被证明是一种有效的方法,以指导其他旋转桌子和主轴中的静压推力轴承精度设计。

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