A Study on Micro-Pit Texture Parameter Optimization and Its Tribological Properties

Author:

Mao Yazhou1,Zhang Yuxuan2,Zheng Jingyang3,Li Lilin1,Huang Yuchun1ORCID,Shi Shaolin1,Wang Linyuan1,Pei Jiaming1,Li Zichen1

Affiliation:

1. School of Mechanical Engineering, Henan University of Engineering, Zhengzhou 451191, China

2. School of Mechanical and Aerospace Engineering, Jilin University, Changchun 130012, China

3. College of Vehicle and Traffic Engineering, Henan University of Science and Technology, Luoyang 471003, China

Abstract

In this paper, the effect of micro-dimple textures (produced by a laser) on the tribological properties of bearings is investigated. This study offers guidelines to reduce the friction torque of the bearing pair and addresses the problem of difficult start-ups after shutdowns. Micro-pits with different texture diameters and depths were machined on the surface of journal bearings. Then, the impact of several different texture parameters on the tribological performance of the bearing pairs was studied using an orthogonal experimental design. Subsequently, the surface morphology of the bearings before and after the friction and wear test was observed using scanning electron microscopy (SEM) and energy-dispersive spectrometry (EDS). These observations were then used to determine the type/state of friction and wear, which also improves our understanding of how texture affects the service life of bearings. The results indicate that the bearings’ micro-pit surface hardness follows an approximate parabolic spatial distribution that decreases along the micro-pit wall. Furthermore, the laser processing of surface textures was found to cause hardening in certain areas, and the chemical composition of elemental carbon and oxygen at the inner surface of processed bearings increased by 31.1% and 7.9%, respectively. Moreover, abrasive wear was identified as the primary form of wear. The textured surface’s antifriction mechanism primarily functioned to trap particles, which acted as a secondary lubrication source and altered the lubrication states by serving as a medium for supplied lubricants. The results confirm that a suitable selection of texture parameters can not only effectively reduce the friction coefficient without shortening the service life of the bearing pair but also facilitate the smooth start-up of the rotor–bearing system.

Funder

Henan Provincial Department of Science and Technology Research Project

Henan Provincial Research Preferential Funding Project for Overseas Students

Henan Province International Science and Technology Cooperation—Cultivation Project

Young Elite Scientists Sponsorship Program

Key Research Project for Higher Education of Henan

Publisher

MDPI AG

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