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A hydrostatic rotary bearing with angled surface self-compensation

机译:具有倾斜表面自补偿的静压旋转轴承

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摘要

A design for a low profile hydrostatic rotary bearing is presented that utilizes a new type of self-compensation that allows a large number of bearing pockets to be present with only a few precision round parts, thus allowing high hydrostatic averaging with relatively low design complexity. A key feature of this design is that it does not use capillaries or orifices or a complex network of passageways to route fluid. The design consists of five easily assembled round parts which can be manufactured by cylindrical grinding. A seal is incorporated which prevents fluid leakage and creates a closed system. The theory of operation is discussed along with manufacturing considerations. Tests show that the rotary bearing has high stiffness, and achieves a high degree of averaging, resulting in a radial error motion of 0.05 μm from components ground to an accuracy of only 2.5 μm.
机译:提出了一种用于薄型静液压旋转轴承的设计,该设计利用了一种新型的自补偿,这种自补偿允许仅使用几个精密的圆形零件就可以存在大量的轴承套,从而可以以相对较低的设计复杂性实现高静液压平均。该设计的关键特征是它不使用毛细管或孔口或复杂的通道网络来输送流体。该设计由五个易于组装的圆形零件组成,这些零件可以通过外圆磨削来制造。装有密封件,可防止流体泄漏并形成密闭系统。讨论了工作原理以及制造注意事项。测试表明,旋转轴承具有很高的刚度,并且可以实现很高的平均水平,从而导致从被磨部件产生的径向误差运动为0.05μm,精度仅为2.5μm。

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