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首页> 外文期刊>Journal of Friction and Wear >Fluid Flow Analysis for Friction Torque around Rolling Element in Ball Bearings
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Fluid Flow Analysis for Friction Torque around Rolling Element in Ball Bearings

机译:滚珠轴承滚动元件周围摩擦扭矩的流体流动分析

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摘要

Ball bearings (e.g., deep-groove, angular-contact, and roller bearings) support loads in a rotor system and provide lubrication between the shaft and housing. The deep-groove ball bearings used in a turbopump do not differ significantly from angular-contact ball bearings or the bearings found in other applications. Deep-groove ball bearings consist of rolling elements, an inner raceway, an outer raceway, and a retainer to guide the rolling elements. In ball bearings, the resistive (churning or drag) forces and torques acting on the rolling elements and raceways are affected by the fluid flow rate and direction, as well as the rotational speed. These churning and drag forces and torques affect the internal dissipation or power losses into the bearing, which become very significant for high-speed applications. This study numerically investigated the characteristics of the flow conditions for deep-groove ball bearings, with a particular focus on the friction distribution on the rolling elements. A simple analytical model of the fluid flow inside a ball bearing was developed using a computational analysis, and the flow characteristics at high rotational speeds are presented.
机译:滚珠轴承(例如,深沟,角接触和滚子轴承)支撑转子系统中的负载,并在轴和壳体之间提供润滑。在涡轮泵中使用的深沟球轴承与其他应用中的角度 - 接触球轴承或轴承没有显着差异。深沟球轴承包括滚动元件,内滚道,外滚道和固定器,以引导滚动元件。在滚珠轴承中,作用在滚动元件和滚道上的电阻(搅拌或拖曳)力和扭矩受到流体流速和方向的影响,以及转速。这些搅拌和拖曳力和扭矩影响内部耗散或功率损耗进入轴承,这对于高速应用而言变得非常显着。该研究在数值上研究了深沟球轴承的流动条件的特性,特别关注滚动元件上的摩擦分布。使用计算分析开发了滚珠轴承内部流体流动的简单分析模型,并提出了高转速的流动特性。

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