Monitoring wear of a deep groove ball bearing using ultrasonic reflection

IF 2.2 3区 工程技术 Q2 ENGINEERING, MECHANICAL
Rui Zhou, Meng Li, Rongfeng Zhang, L. Liu, Jun Yang, Heng Liu, Yi Liu
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引用次数: 0

Abstract

Wear changes the contact state and contact stiffness of the interface between the ball and the outer raceway under operation of a deep groove ball bearing, resulting in the change of reflection coefficient of the interface. This paper describes a method based on ultrasonic reflection to assess the wear status of rolling element bearings. A deep groove ball bearing wear test was performed and the reflected pulses were collected with a linear ultrasonic probe mounted on the bearing outer ring. The results show as the wear intensity first increases and then decreases from running-in stage to steady wear period, the reflection coefficient of the interface between the outer raceway and ball shows the expected opposite trend. In addition, the ultrasonic measurement of wear state was verified by oil debris monitoring using on-line visual ferrography.
利用超声反射监测深沟球轴承的磨损
深沟球轴承运行时,磨损会改变球与外滚道界面的接触状态和接触刚度,导致界面反射系数的变化。本文介绍了一种基于超声波反射的滚动轴承磨损状态评估方法。对深沟球轴承进行了磨损试验,并用安装在轴承外圈上的线性超声波探头收集反射脉冲。结果表明,从磨合期到稳定磨损期,磨损强度先增大后减小,外滚道与滚珠界面的反射系数呈现出预期的相反趋势。此外,通过在线视觉铁谱法监测油屑,验证了磨损状态的超声波测量。
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来源期刊
Journal of Tribology-transactions of The Asme
Journal of Tribology-transactions of The Asme 工程技术-工程:机械
CiteScore
4.20
自引率
12.00%
发文量
117
审稿时长
4.1 months
期刊介绍: The Journal of Tribology publishes over 100 outstanding technical articles of permanent interest to the tribology community annually and attracts articles by tribologists from around the world. The journal features a mix of experimental, numerical, and theoretical articles dealing with all aspects of the field. In addition to being of interest to engineers and other scientists doing research in the field, the Journal is also of great importance to engineers who design or use mechanical components such as bearings, gears, seals, magnetic recording heads and disks, or prosthetic joints, or who are involved with manufacturing processes. Scope: Friction and wear; Fluid film lubrication; Elastohydrodynamic lubrication; Surface properties and characterization; Contact mechanics; Magnetic recordings; Tribological systems; Seals; Bearing design and technology; Gears; Metalworking; Lubricants; Artificial joints
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