Tribological Properties for the Interaction of Point Contact Interface 核心 · 已核验

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Investigating the wear characteristics of point contact interfaces under the coupled effects of lubrication,wear,and surface topography is of great significance for predicting the service life and failure modes of mechanical components,as well as for improving their performance. Meanwhile, It lays a theoretical foundation for the maintenance, replacement,and reliability assessment of critical components.This paper constructs a mathematical model for predicting wear at point contact interfaces under various lubrication conditions to explore the wear behavior characteristics in the point contact area.The lubrication state of the contact interface is determined based on elastohydrodynamic lubrication(EHL)theory,and the half-width and contact stress of the interface are calculated using Hertzian contact theory. Combining the spatial structure of the ball - disc friction and wear test rig and the Archard wear theory, a wear prediction model for point contacts under different lubrication conditions is established. Experiments are carried out on the ball - disc friction and wear test rig. The wear marks before and after wear are analyzed and compared, and the experimental results are compared with the theoretical results. It is found that the theoretical results are in good agreement with the experimental results in reflecting the relationships between the friction radius, test force, number of revolutions and the wear amount of the contact interface, the influence of the friction radius and the number of wear times on the wear rate under different lubrication states, and the improvements in contact half-width and wear distribution under lubricated conditions. Under dry friction conditions, an increase in friction radius leads to a gradual increase in wear rate. However, under lubricated conditions, an increase in friction radius results in a gradual decrease in wear rate. As the number of wear cycles increases, the wear rate tends to stabilize. In lubricated conditions, the contact half-width is narrower compared to dry friction, and the wear distribution is significantly improved. The wear prediction model proposed in this paper can accurately predict the wear depth at the point contact interface and provides a crucial theoretical basis and research approach for the study of wear evolution in point contact transmission interfaces.

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https://www.scidb.cn/detail?dataSetId=070ea969cd2c455c9aa2fed206077bc4
许可证
CC-BY-NC-ND-4.0 (置信:unknown)
国内可访问性
国内直连:可达 (2026-07-11 检测) 非直连:可达 (2026-07-11 检测)
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PHM 任务
rul_prediction degradation_trend_prediction

故障工况

fault_type: wear
溯源(8 条)
来源链接: https://www.scidb.cn/detail?dataSetId=070ea969cd2c455c9aa2fed206077bc4 日期: 2026-07-09
日期: 2026-07-10
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