首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >A SIMPLIFIED ANALYTICAL MODEL OF ROLLING/SLIDING BEHAVIOR AND FRICTION IN FOUR-POINT-CONTACT BALL BEARINGS AND SCREWS
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A SIMPLIFIED ANALYTICAL MODEL OF ROLLING/SLIDING BEHAVIOR AND FRICTION IN FOUR-POINT-CONTACT BALL BEARINGS AND SCREWS

机译:四点接触球轴承和螺钉中轧制/滑动行为和摩擦的简化分析模型

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摘要

Four-point contact between ball and raceways is common in machine elements like ball bearings and ball screws. The ideal four-point-contact machine element is designed with pure rolling (i.e., no sliding at contact points) to minimize friction. However, this ideal may not always be achieved, leading to sliding and higher frictional forces. In this paper, a simplified analytical model for rolling/sliding behavior and friction in four-point contact is developed, based on Coulomb friction model and rigid body assumption. It is found that pure rolling is only possible when the contact-point geometry satisfies a certain relationship. When pure rolling condition fails to hold, the sliding contact point(s) can be determined analytically as a function of contact forces and contact angles. Case studies are presented to demonstrate how the proposed model could elucidate the roles of misalignments, manufacturing errors and loading conditions on rolling/sliding behavior and friction.
机译:球和滚道之间的四点接触是滚珠轴承和滚珠丝杠等机器元件中的常见。理想的四分 - 接触机元件设计有纯轧制(即,在接触点处的滑动)设计,以最大限度地减少摩擦。然而,这种理想可能并不总是实现,导致滑动和更高的摩擦力。在本文中,基于库仑摩擦模型和刚体假设,开发了一种用于轧制/滑动行为和摩擦摩擦的简化分析模型。发现只有当接触点几何形状满足一定的关系时才唯一可能的滚动。当纯轧制状态未能保持时,滑动接触点可以作为接触力和接触角的函数分析地确定。提出了案例研究以展示所提出的模型如何阐明未对准,制造错误和装载条件的角色对滚动/滑动行为和摩擦。

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