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DESIGN OF SHORT-PIPE RESTRICTOR OF HYDROSTATIC THRUST BEARINGS

机译:静压推力轴承短管限位器的设计

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High stiffness hydrostatic bearings are needed in order to achieve precise motions of the machine components of ultra-precision machine tools or other precision machines. Design procedure of restrictors of hydrostatic thrust bearings, making bearing stiffness maximize under given conditions, is considered in the paper. In particular, the paper focuses on design of short pipe restrictors that are used in the hydrostatic thrust bearings in many industrial applications. Derived mathematical model predicting load capacity and stiffness of the hydrostatic bearings with short pipe restrictors are verified by compared with experimental results. Based on the derived mathematical model, an optimum condition of a ratio between the diameter and length of the short pipe restrictor is then derived. Designed short pipe restrictors are used in a water hydrostatic thrust bearing. Then the experimental results show that the bearing stiffness significantly increased. It is noted that the optimum condition of the restrictors is represented by defined non-dimensional parameters.
机译:需要高刚度的静压轴承,以实现超精密机床或其他精密机械的机械部件的精确运动。本文考虑了静压推力轴承限流器的设计程序,该设计程序可在给定条件下使轴承刚度最大化。特别是,本文着重于短管限流器的设计,该限流器用于许多工业应用中的静压推力轴承。通过与实验结果的比较,验证了推导带有短管限流器的静压轴承的载荷能力和刚度的数学模型。基于导出的数学模型,然后导出短管限流器的直径与长度之比的最佳条件。设计的短管限流器用于水静压推力轴承。然后,实验结果表明轴承刚度显着提高。注意,限流器的最佳状态由定义的无量纲参数表示。

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