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Static Performance of Multi-leaf Compliant Gas Foil Journal Bearings with Assembly Preload

机译:多叶柔性气体箔轴颈轴承静态性能,装配预加载

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Gas Foil Bearings (GFBs) are self-acting hydrodynamic bearings and potential alternatives to rolling element bearings for high speed applications. In order to increase load capacity, the assembly preload is often added to GFBs now. Firstly, for multi-leaf GFBs with assembly preload, this paper presents a method to fabricate the bearings with assembly preload, and the precision of the shape of the top foils is discussed. Then, the bearing deflection with static load of the foil bearing was measured. A static load, which is up to 340N, could be applied to the tested GFBs with assembly preload by a mechanical loading device, and a strain gauge type load cell was used to measure the applied static load. Finally, the stiffness coefficient of the tested bearing was estimated and a cubic polynomial of stiffness coefficient for test bearings is estimated using the measured static load versus deflection test data. The results show the radius of top foils which were fabricated by this method can be changed by different pressures and the accuracy of foil shape is improved. The load capacity and stiffness are both two times larger than bump-type GFBs.
机译:燃气箔轴承(GFB)是用于高速应用的滚动元件轴承的自行动力轴承和潜在的替代方案。为了提高负载能力,常常将装配预加载添加到GFB。首先,对于具有组装预载的多叶GFB,本文介绍了用组装预载制造轴承的方法,并且讨论了顶部箔的形状的精度。然后,测量具有箔轴承静载荷的轴承偏转。可以通过机械装载装置将高达340n的静载荷施加到测试的GFB,并且使用菌株量型载荷电池来测量施加的静电负载。最后,估计了测试轴承的刚度系数,并且使用测量的静态载荷与偏转测试数据估计了测试轴承的立方多项式的刚度系数。结果表明,通过该方法制造的顶部箔的半径可以通过不同的压力改变,并且改善了箔形状的精度。负载能力和刚度均为比凸点型GFB大的两倍。

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