Relative anti-wear property evaluation of nano garnet gear lubricant

IF 1 4区 工程技术 Q4 ENGINEERING, MECHANICAL
R. Maheswaran, J. Sunil
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引用次数: 15

Abstract

In gear boxes, the life of gears is increased by reducing the wear caused due to the friction between the rubbing surfaces of gears. This paper addresses on the study of the relative anti-wear property of nano garnet gear lubricant which are formulated by dispersing 0.25 wt%, and 0.50 wt% of nano garnet particles in commercially available SN500 grade gear lubricant oil through a standard two-step method. The anti-wear property of the lubricant is estimated by a four-ball wear test and is measured through the microscopic investigations on the surface texture modifications namely width of the wear ring and wear scar diameter. The width of wear ring is reduced to 3.83%, 6.39%, and the wear scar diameter is reduced to 6.1%, 2.44% due to the addition of 0.25 wt%, and 0.50 wt% of particle concentrations at a maximum applied load of 588N due to the rolling effect of nano garnet particles.
纳米石榴石齿轮润滑剂的相对抗磨性能评价
在齿轮箱中,通过减少齿轮摩擦表面之间的摩擦引起的磨损,提高了齿轮的寿命。本文通过标准的两步法,将0.25 wt%和0.50 wt%的纳米石榴石颗粒分散在市售的SN500级齿轮润滑油中,研究了纳米石榴石齿轮润滑剂的相对抗磨性能。润滑剂的抗磨性能通过四球磨损试验进行评估,并通过对表面纹理变化(即磨损环的宽度和磨痕直径)的微观研究进行测量。在588N的最大施加载荷下,由于纳米石榴石颗粒的滚动效应,添加了0.25wt%和0.50wt%的颗粒浓度,磨损环的宽度分别减小到3.83%、6.39%,磨痕直径分别减小到6.1%、2.44%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.60
自引率
25.00%
发文量
21
审稿时长
>12 weeks
期刊介绍: IJSurfSE publishes refereed quality papers in the broad field of surface science and engineering including tribology, but with a special emphasis on the research and development in friction, wear, coatings and surface modification processes such as surface treatment, cladding, machining, polishing and grinding, across multiple scales from nanoscopic to macroscopic dimensions. High-integrity and high-performance surfaces of components have become a central research area in the professional community whose aim is to develop highly reliable ultra-precision devices.
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