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A Study on Active Closed-Loop Gap Control for Hydrostatic Bearing

机译:静压轴承有源闭环间隙控制研究

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In this paper, a hydrostatic bearing controlled by servo-valve for precise closed-loop oil-film gap control is developed. Due to the increasing demands of larger dimension, heavier load and higher precision for current and future machine tools, the development of hydrostatic bearing has become a more and more important issue over the past decades. Nowadays, the most commonly used active pressure feedback restrictor for hydrostatic bearing is membrane type, in which a thin and flexible metal sheet serves as the key component to meter the hydraulic oil flow precisely. However, the membrane type pressure feedback restrictor is not quite suitable for extremely heavy load. Therefore, an alternative to design the active restrictor for hydrostatic bearing using servo-valve is presented in this paper. Different controllers are also designed and compared in this paper. There are two significant features regarding the proposed design. The first one is the introduced orifice restrictor inside the servo-valve which avoids the influence of possible oil temperature variation. The second feature is the introduced closed-loop oil-film gap control scheme that widens the application range effectively. Finally, a test rig of servo-valve controlled hydrostatic bearing is implemented and the experimental results prove the validity of the hydrostatic bearing with the proposed servo-valve and the closed-loop gap control scheme.
机译:在本文中,开发了一种用于精确闭环油膜间隙控制的伺服阀控制的静压轴承。由于对电流和未来机床的更大尺寸,较大负荷和更高的精度,较大的负荷和更高的精度,静水轴承的开发已成为过去几十年的越来越重要的问题。如今,用于静压轴承的最常用的主动压力反馈限制器是膜型,其中薄且柔性金属板用作仪表液压油的关键部件。然而,膜式压力反馈限制器不太适合极重的负荷。因此,本文介绍了使用伺服阀设计用于使用伺服阀的静压轴承的有源限制的替代方案。在本文中还设计了不同的控制器。关于所提出的设计存在两个重要特点。第一个是伺服阀内引入的孔口限制器,避免了可能的油温变化的影响。第二个特征是引入的闭环油膜间隙控制方案,其有效地扩展了应用范围。最后,实施了伺服阀控制静压轴承的试验台,实验结果证明了静液轴承的有效性,具有所提出的伺服阀和闭环间隙控制方案。

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