Performance analysis of columnar convex-concave compound microtexture thrust bearing

IF 1.5 4区 工程技术 Q3 ENGINEERING, MECHANICAL Industrial Lubrication and Tribology Pub Date : 2024-03-11 DOI:10.1108/ilt-09-2023-0286
Lili Wang, Ying’ao Liu, Jingdong Duan, Yunlong Bao
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Abstract

Purpose

This study aims to enhance the lubrication performance of thrust bearings. The influence of columnar convex–concave compound microtexture on bearing performance is investigated

Design/methodology/approach

Based on the compound microtexture model of thrust bearings, considering surface roughness and turbulent effect, the variation of lubrication characteristics with the change in the compound microtexture parameters is studied.

Findings

The results indicate that, compared with circular microtexture, the maximum pressure of compound microtexture of thrust bearings increases by 7.42%. Optimal bearing performance is achieved when the internal microtexture depth is 0.02 mm. Turbulent flow states and surface roughness lead to a reduction in the optimal depth. The maximum pressure and load-carrying capacity of the bearing decrease as the initial angle increases, whereas the friction coefficient increases with the increase in the initial angle. The lubrication performance is best for bearings with a circumferential parallel arrangement of microtexture.

Originality/value

The novel composite microtexture with columnar convex-concave is proposed, and the computational model of thrust bearings is set. The influence of surface roughness and turbulent flow on the bearing performance should be considered for better conforming with engineering practice. The effect of microtexture depth, arrangement method and distribution position on the lubrication performance of the compound microtexture thrust bearing is investigated, which is of great significance for improving tribology, thrust bearings and surface microtexture theory.

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柱状凸凹复合微质地推力轴承的性能分析
目的 本研究旨在提高推力轴承的润滑性能。设计/方法/途径基于推力轴承复合微观纹理模型,考虑表面粗糙度和湍流效应,研究了润滑特性随复合微观纹理参数变化的影响。当内部微观纹理深度为 0.02 毫米时,轴承性能达到最佳。紊流状态和表面粗糙度会导致最佳深度减小。轴承的最大压力和承载能力随着初始角度的增大而减小,而摩擦系数则随着初始角度的增大而增大。提出了新型柱状凸凹复合微纹理,并建立了推力轴承的计算模型。为了更好地符合工程实际,应考虑表面粗糙度和紊流对轴承性能的影响。研究了微纹理深度、排列方式和分布位置对复合微纹理推力轴承润滑性能的影响,对摩擦学、推力轴承和表面微纹理理论的改进具有重要意义。
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来源期刊
Industrial Lubrication and Tribology
Industrial Lubrication and Tribology 工程技术-工程:机械
CiteScore
3.00
自引率
18.80%
发文量
129
审稿时长
1.9 months
期刊介绍: Industrial Lubrication and Tribology provides a broad coverage of the materials and techniques employed in tribology. It contains a firm technical news element which brings together and promotes best practice in the three disciplines of tribology, which comprise lubrication, wear and friction. ILT also follows the progress of research into advanced lubricants, bearings, seals, gears and related machinery parts, as well as materials selection. A double-blind peer review process involving the editor and other subject experts ensures the content''s validity and relevance.
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