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사각형 그루브로 Surface Texturing한 평행 스러스트 베어링의 열유체윤활 해석: 제2보 - 그루브 깊이의 영향THD Lubrication Analysis of a Surface-Textured Parallel Thrust Bearing with Rectangular Grooves: Part 2 - Effect of Groove Depth

Other Titles
THD Lubrication Analysis of a Surface-Textured Parallel Thrust Bearing with Rectangular Grooves: Part 2 - Effect of Groove Depth
Authors
박태조강정국
Issue Date
Feb-2023
Publisher
한국트라이볼로지학회
Keywords
Computational fluid dynamics; Film-temperature boundary condition; Parallel thrust bearing; Thermohydrodynamic lubrication(THD); Surface texturing; CFD/전산유체역학; 유막온도경계조건; 평행 스러스트 베어링; 열유체윤활; 표면 텍스쳐링
Citation
한국트라이볼로지학회지, v.39, no.1, pp 21 - 27
Pages
7
Indexed
KCI
Journal Title
한국트라이볼로지학회지
Volume
39
Number
1
Start Page
21
End Page
27
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/30235
ISSN
2713-8011
Abstract
Surface texturing is widely applied to friction surfaces of various machine elements. Most of the theoretical studies have focused on isothermal (ISO) analyses which consider constant lubricant viscosity. However, there have been limited studies on the effect of lubricant oil temperature increase owing to viscous shear. Following the first part of the present study that investigated the effects of film-temperature boundary condition (FTBC) and groove number on the thermohydrodynamic (THD) lubrication characteristics of a surface-textured parallel thrust bearing with multiple rectangular grooves, this study focuses on the effect of groove depths. Current study numerically analyzes the continuity, Navier-Stokes, and energy equations with temperature-viscosity-density relations using a commercial computational fluid dynamics (CFD) software, FLUENT. The results of variation in temperature, velocity, and pressure distributions as well as load-carrying capacity (LCC) and friction force indicate that groove depth and FTBC significantly influence the temperature distribution and pressure generation. The LCC is maximum near the groove depth at which the vortex starts, smaller than the ISO result. For intense grooves, the LCC of THD may be larger than that from ISO. The frictional force decreases as the groove becomes deeper, and decreases more significantly in the case of THD. The study shows that groove depth significantly influences the THD lubrication characteristics of surface-textured parallel thrust bearings.
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공과대학 > Department of Mechanical Engineering > Journal Articles
공학계열 > 기계항공우주공학부 > Journal Articles

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