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미세 그루브가 있는 무한폭 Slider 베어링의 윤활해석:제3보 - 그루브 형상의 영향Lubrication Analysis of Infinite Width Slider Bearingwith a Micro-Groove: Part 3 - Effect of Groove Shape

Other Titles
Lubrication Analysis of Infinite Width Slider Bearingwith a Micro-Groove: Part 3 - Effect of Groove Shape
Authors
박태조장인규
Issue Date
2020
Publisher
한국트라이볼로지학회
Keywords
slider bearing; surface texturing; hydrodynamic lubrication; computational fluid dynamics(CFD); numerical analysis; 슬라이더 베어링; 표면조직가공; 유체윤활; 전산유체역학; 수치해석
Citation
한국트라이볼로지학회지, v.36, no.4, pp 193 - 198
Pages
6
Indexed
KCI
Journal Title
한국트라이볼로지학회지
Volume
36
Number
4
Start Page
193
End Page
198
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/7653
DOI
10.9725/kts.2020.36.4.193
ISSN
2713-8011
Abstract
Fluid film bearings are among the best devices used for overcoming friction and reducing wear. Surface texturing is a new surface treatment technique used for processing grooves and dimples on the lubricated surface, and it helps to minimize friction further and improve the wear resistance. In several studies, parallel surfaces, such as thrust bearings and mechanical face seals, have been investigated, but most sliding bearings have a convergent film shape. This paper presents the third part of a recent study and focuses on the effect of the groove shape on the lubrication performance of inclined slider bearings, following the two previous papers on the effects of the groove position and depth. We adopted the continuity and Navier – Stokes equations to conduct numerical analyses using FLUENT, which is a commercial computational fluid dynamics code. The groove shape adopted in the numerical analysis is rectangular and triangular, and its depth is varied. The results show that the streamlines, pressure distributions, and groove shape significantly influence the lubrication performance of the inclined slider bearing. For both shapes, the load-carrying capacity (LCC) is maximum near the groove depth, where vortices occur. In the shallow grooves, the LCC of the rectangular shape is higher, but in deeper grooves, that of the triangular shape is higher. The deeper the rectangular groove, the higher the decrease in the frictional force. The results of this study can be used as design data for various sliding bearings.
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공과대학 > Department of Mechanical Engineering > Journal Articles

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