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INCLUDING PIVOT FRICTION IN PAD MOTION FOR A TILTING PAD JOURNAL BEARING WITH BALL-SOCKET PIVOTS

机译:带有球窝小提琴的倾角垫子轴承的垫块运动中包括惯性摩擦

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Tilting pad journal bearing has its wide application in turbomachinery. For years, frictionless contact has been assumed for all the contact types in bearing coefficients prediction of tilting pad bearings. Existing experimental data demonstrates contact friction does present in pivots and can prevent pads from effective tilting, which is especially true for the surface contact pivot, e.g. ball-socket pivot. However, no open literature is available to discuss individual pad motion with consideration of pivot contact friction and document the effects on the dynamic behaviors of tilting pad bearings. This paper tries to improve the understanding in this area by discussing the pad motion of a tilting pad bearing with ball-socket pivots subject to pivot friction. A model, which couples the journal motion, hydrodynamic pressure from oil film and contact pressure within the pivots, is established. Instead of Hertz contact, a conformal contact model is applied for the ball-socket contact. Through the coupled transient analyses, the effects of contact friction coefficients, bearing dynamic and static loading, and pivot size on pads motion of a 5-pads load-on-pad bearing are considered and compared. The results show that the presence of friction within ball-socket pivots does not guarantee "locked up" pads motion, but only limits pads from effective tilting for a given range of friction coefficients. Larger dynamic load increases pad tilting amplitude; this does not mean that enlarged tilting magnitudes reduce pivot friction moments for the pads. With varying bearing loads, the pivot friction could result in non-synchronous motion of pads tilting and pivots deformation and bring these non-synchronous components into the journal vibration. Size-reduced pivots are found to diminish the effects of pivot friction and offer preferred pads dynamics and journal vibration.
机译:倾斜垫轴颈轴承在涡轮机械中有广泛的应用。多年来,在可倾瓦轴承的轴承系数预测中,所有接触类型都假定采用无摩擦接触。现有的实验数据表明,在枢轴中确实存在接触摩擦,并且可以防止垫有效倾斜,这对于表面接触枢轴(例如表面接触轴)尤其如此。球窝枢轴。但是,没有公开的文献可以讨论枢轴接触摩擦力来讨论各个轴瓦的运动,也没有文献记载对轴瓦轴承动特性的影响。本文试图通过讨论带有球窝枢轴的可倾瓦轴承的轴瓦运动来提高对这一领域的理解,其中球窝枢轴会受到枢轴摩擦。建立了一个模型,该模型将轴颈运动,油膜的流体动压力和枢轴内的接触压力耦合在一起。球形触点采用了保形触点模型,而不是赫兹触点。通过耦合瞬态分析,考虑并比较了接触摩擦系数,轴承动态和静态载荷以及枢轴尺寸对5轴瓦式轴瓦轴承的轴瓦运动的影响。结果表明,球窝枢轴内的摩擦力不能保证垫块“锁定”,而只能在给定的摩擦系数范围内限制垫块有效倾斜。较大的动态负载会增加焊盘的倾斜幅度;这并不意味着增大的倾斜幅度会减小摩擦片的枢轴摩擦力矩。在变化的轴承载荷下,枢轴摩擦力可能导致衬块倾斜的非同步运动,并使枢轴变形并使这些非同步分量进入轴颈振动。发现减小尺寸的枢轴可减小枢轴摩擦的影响,并提供首选的摩擦垫动力学和轴颈振动。

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