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Performance of hydrostatic tilted thrust pad bearings of various recess shapes operating with non-Newtonian lubricant

机译:使用非牛顿润滑剂的各种凹口形状的静液压倾斜推力垫轴承的性能

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摘要

Hydrostatic thrust bearings are an integral part of hydroelectric power stations. These bearings are usually designed to work under parallel operation, but tilt is inevitable due to manufacturing errors, assembly errors, structural vibrations and structural deformations. Owing to the advent of latest advancements in manufacturing techniques, any geometric shape of recess can be easily manufactured and the designer has a greater flexibility. The geometric shape of recess significantly affects the performance of a bearing. Therefore, the present study is aimed to numerically analyze the influence of the tilt and recess shape on the static and dynamic performance characteristics of the hydrostatic thrust pad bearing system having Rabinowitsch fluid model lubricant. The lubricant obeying Rabinowitsch fluid model with tilt makes the Reynolds equation highly non-linear therefore, finite element method is used to analyze. Three different types of recess shapes of equal area A-bar_b/A-bar_(oc) = 4 have been analyzed to model hydrostatic thrust pad compensated by orifice compensator. The numerically simulated results indicate that the tilt angle significantly affects the dynamic and static characteristic parameters. The value of pocket pressure and fluid film reaction of a hydrostatic thrust pad bearing has been found to significantly decrease with tilt whereas the value of lubricant flow, fluid film stiffness coefficient and fluid damping coefficient increase with tilt.
机译:静压推力轴承是水力发电站的组成部分。这些轴承通常设计为在平行运行下工作,但是由于制造错误,装配错误,结构振动和结构变形,不可避免地会产生倾斜。由于制造技术的最新进展的出现,可以容易地制造任何几何形状的凹槽,并且设计者具有更大的灵活性。凹槽的几何形状会显着影响轴承的性能。因此,本研究旨在数值分析倾斜和凹陷形状对具有Rabinowitsch流体模型润滑剂的静压推力瓦轴承系统的静态和动态性能特性的影响。润滑剂服从具有倾斜的Rabinowitsch流体模型使Reynolds方程高度非线性,因此,使用有限元方法进行分析。已经分析了三种不同类型的等面积A-bar_b / A-bar_(oc)= 4的凹陷形状,以建模由节流孔补偿器补偿的静压推力垫。数值模拟结果表明,倾斜角显着影响动态和静态特征参数。已经发现,静压推力瓦轴承的凹穴压力和流体膜反应值随倾斜而显着降低,而润滑剂流量,流体膜刚度系数和流体阻尼系数随倾斜而增大。

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