유막온도경계조건이 평행 슬라이더 베어링의 윤활성능에 미치는 영향Effect of Film-Temperature Boundary Conditions on the Lubrication Performance of Parallel Slider Bearing
- Other Titles
- Effect of Film-Temperature Boundary Conditions on the Lubrication Performance of Parallel Slider Bearing
- Authors
- 박태조; 김민규
- Issue Date
- 2017
- Publisher
- 한국트라이볼로지학회
- Keywords
- 전산유체역학; 유막온도경계조건; 평행 슬라이더 베어링; 열유체 윤활; 열쐐기; computational fluid dynamics(CFD); film-temperature boundary conditionparallel slider bearing; thermohydrodynamic lubrication; thermal wedge
- Citation
- 한국트라이볼로지학회지, v.33, no.5, pp 207 - 213
- Pages
- 7
- Indexed
- KCI
- Journal Title
- 한국트라이볼로지학회지
- Volume
- 33
- Number
- 5
- Start Page
- 207
- End Page
- 213
- URI
- https://scholarworks.gnu.ac.kr/handle/sw.gnu/14352
- DOI
- 10.9725/kstle.2017.33.5.207
- ISSN
- 2713-8011
- Abstract
- In sliding bearings, viscous friction due to high shear acting on the bearing surface raises the oil temperature.
One of the mechanisms responsible for generating the load-carrying capacity in parallel surfaces is known as the viscosity wedge effect. In this paper, we investigate the effect of film-temperature boundary conditions on the thermohydrodynamic (THD) lubrication of parallel slider bearings. For this purpose, the continuity equation, Navier-Stokes equation, and the energy equation with temperature-viscosity-density relations are numerically analyzed using the commercial computational fluid dynamics (CFD) code FLUENT. Two different film-temperature boundary conditions are adopted to investigate the pressure generation mechanism. The temperature and viscosity distributions in the film thickness and flow directions were obtained, and the factors related to the pressure generation in the equation of motion were examined in detail. It was confirmed that the temperature gradients in the film and flow directions contribute heavily to the thermal wedge effect, due to which parallel slider bearing can not only support a considerable load but also reduce the frictional force, and its effect is significantly changed with the film-temperature boundary conditions. The present results can be used as basic data for THD analysis of surface-textured sliding bearings; however, further studies on various film-temperature boundary conditions are required.
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