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Influence of tilt on the performance of circular thrust pad bearing of various recess shapes

机译:倾斜度对各种凹槽形状的圆形推力瓦轴承性能的影响

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Thrust bearings are an essential component of our heavy rotating machinery equipment. The performance of these machinery is greatly affected by the performance of thrusts bearing. Tilt in these bearing is inevitable due to structural thermal and manufacturing errors. The geometric shape of recess can be made in different ways. The present study aims to analyze the influence of the tilt angle and various recess shapes on the static and dynamic performance characteristics of the hydrostatic thrust pad bearing system compensated with capillary restrictor. Finite element method is used to solve governing Reynolds equation. Five different types of recess geometries of equal pocket to bearing area ratio have been used to model hydrostatic thrust pad. The numerically simulated results indicate that the tilt angle significantly affects the dynamic and static characteristic parameters. The tilt significantly reduces the value of pocket pressure and load carrying capacity.
机译:推力轴承是我们重型旋转机械设备的重要组成部分。推力轴承的性能极大地影响了这些机械的性能。由于结构热和制造误差,这些轴承中的倾斜是不可避免的。凹槽的几何形状可以以不同的方式制成。本研究旨在分析倾斜角和各种凹槽形状对带有毛细管限流器的静压推力瓦轴承系统的静态和动态性能特性的影响。用有限元法求解控制雷诺方程。五种不同类型的凹槽几何形状具有相同的凹坑与轴承面积之比,已被用来模拟静压推力垫。数值模拟结果表明,倾斜角显着影响动态和静态特征参数。倾斜度显着降低了囊袋压力和承载能力的值。

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