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사각형 그루브로 Surface Texturing한 평행 스러스트 베어링의 열유체윤활 해석: 제1보 - 유막온도경계조건의 영향THD Lubrication Analysis of a Surface-Textured Parallel Thrust Bearing with Rectangular Grooves:Part 1 - Effect of Film-Temperature Boundary Condition

Other Titles
THD Lubrication Analysis of a Surface-Textured Parallel Thrust Bearing with Rectangular Grooves:Part 1 - Effect of Film-Temperature Boundary Condition
Authors
박태조강정국
Issue Date
Dec-2022
Publisher
한국트라이볼로지학회
Keywords
전산유체역학; 유막온도경계조건; 평행 스러스트 베어링; 표면 텍스쳐링; 열유체 윤활; Computational fluid dynamics(CFD); Film-temperature boundary condition); Parallel thrust bearing; Surface texturing; Thermohydrodynamic lubrication(THD)
Citation
한국트라이볼로지학회지, v.38, no.6, pp 267 - 273
Pages
7
Indexed
KCI
Journal Title
한국트라이볼로지학회지
Volume
38
Number
6
Start Page
267
End Page
273
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/30636
ISSN
2713-8011
Abstract
Surface texturing is the latest technology for processing grooves or dimples on the friction surface of a machine. When appropriately applied, it can reduce friction and significantly increase durability. Despite many studies over the past 20 years, most are isothermal (ISO) analyses in which the viscosity of the lubricant is constant. In practice, the viscosity changes significantly owing to the heat generated by the viscous shear of the lubricant and film-temperature boundary condition (FTBC). Although many thermohydrodynamic (THD) analyses have been performed on various sliding bearings, only few results for surface-textured bearings have been reported. This study investigates the effects of the FTBC and groove number on the THD lubrication characteristics of a surface-textured parallel thrust bearing with multiple rectangular grooves. The continuity, Navier-Stokes, and energy equations with temperature-viscosity-density relations are numerically analyzed using a commercial computational fluid dynamics code, FLUENT. The results show the pressure and temperature distributions, variations of load-carrying capacity (LCC), and friction force with four FTBCs. The FTBCs greatly influence the lubrication characteristics of surface-textured parallel thrust bearings. A groove number that maximizes the LCC exists, which depends on the FTBC. ISO analysis overestimates the LCC but underestimates friction reduction. Additional analysis of various temperature boundary conditions is required for practical applications.
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공과대학 > Department of Mechanical Engineering > Journal Articles
공학계열 > 기계항공우주공학부 > Journal Articles

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