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Application of dynamic mesh technology in the oil film flow simulation for hydrostatic bearing

机译:动态网格技术在静压轴承油膜流动模拟中的应用

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Purpose The purpose of this paper was to obtain the lubrication characteristics of heavy hydrostatic bearing in heavy equipment manufacturing industry through theoretical analysis and numerical simulation. Design/methodology/approach This paper discusses the influence of oil film thickness variation on velocity field, outlet-L and outlet-R flow velocity under the hydrostatic bearing running in no-load 0 N, load 400 KN, full load 1,500 KN and rotating speeds of 10 r/min, 20 r/min, 30 r/min, 40 r/min, 50 r/min and 60 r/min, by using dynamic mesh technology and FLUENT software. Findings When the working table rotates clockwise, in the change process of oil film thickness, the fluid flow pattern of the lubricating oil at the edge of the sealing oil is the rule of laminar flow, and the oil cavity has a vortex. The outlet-R flow velocity becomes higher and higher by increasing the bearing load and working table speed, and the flow velocity increases with the decrease in oil film thickness; the outlet-L flow velocity increases with the decrease in oil film thickness under low rotating speed (less than 10 r/min) condition and decreases with the decrease of oil film thickness under high rotating speed (more than 60 r/min) condition. Originality/value The influence of the oil film thickness on the flow state distribution of the oil film was analyzed under different working conditions, and the influence rules of oil film thickness on the flow velocity of hydrostatic bearing oil pad was obtained by using dynamic mesh technology.
机译:目的本文的目的是通过理论分析和数值模拟获得重型设备制造业重型静水轴承的润滑特性。设计/方法/方法本文讨论了油膜厚度变化对空静电轴承速度场,出口-1和出口-R流速的影响,静压轴承在空载0 n中运行,负载400 kN,满载1,500 kN和旋转通过使用动态网格技术和流畅的软件,10 r / min,20 r / min,30 r / min,40 r / min,50 r / min和60 r / min的速度。发现当工作台顺时针旋转时,在油膜厚度的变化过程中,密封油边缘处的润滑油的流体流动图案是层流的规则,并且油腔具有涡流。通过增加轴承负荷和工作台速度,出口-R流速变得更高,更高,并且流速随着油膜厚度的降低而增加;出口-1流速随着低旋转速度(小于10升/分钟)条件下的油膜厚度的降低而增加,并且随着在高旋转速度(超过60 r / min)条件下的油膜厚度的降低而降低。原创性/值在不同的工作条件下分析了油膜厚度对油膜流动状态分布的影响,并通过使用动态网格技术获得了静液压轴承油垫的流速的油膜厚度的影响规则。

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