범프 타입 포일 스러스트 베어링의 정하중 구조 강성 및손실 계수 차이에 관한 실험적 연구On the Bearing-to-Bearing Variability in ExperimentallyIdentified Structural Stiffnesses and Loss Factors of Bump-TypeFoil Thrust Bearings under Static Loads
- Other Titles
- On the Bearing-to-Bearing Variability in ExperimentallyIdentified Structural Stiffnesses and Loss Factors of Bump-TypeFoil Thrust Bearings under Static Loads
- Authors
- 이성진; 류근; 정진희; 류솔지
- Issue Date
- Dec-2020
- Publisher
- 한국트라이볼로지학회
- Keywords
- foil bearings; thrust bearings; structural stiffness; loss factor; experimental parameter identification; 포일 베어링; 스러스트 베어링; 구조 강성; 손실 계수; i실험적 계수 규명
- Citation
- 한국트라이볼로지학회지, v.36, no.6, pp 332 - 341
- Pages
- 10
- Indexed
- KCI
- Journal Title
- 한국트라이볼로지학회지
- Volume
- 36
- Number
- 6
- Start Page
- 332
- End Page
- 341
- URI
- https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/1464
- DOI
- 10.9725/kts.2020.36.6.332
- ISSN
- 2713-8011
- Abstract
- High-speed turbomachinery implements gas foil bearings (GFBs) due to their distinctive advantages, such as high efficiency, lesser part count, and lower weight. This paper provides the test results of the static structural stiffnesses and loss factors of bump-type foil thrust bearings with increasing preload and bearing deflection. The focus of the current work is to experimentally quantify variability in structural stiffnesses and loss factors among the four test thrust bearings with identical design values and material of the bump and top foil geometries using the same (open-source) fabrication method. A simple test setup, using a rigidly mounted non-rotating shaft and thrust disk, measures the bearing bump deflections with increasing static loads on the test bearing. The inner and outer diameters of the test bearings are 41 mm and 81 mm, respectively. The loss factor, best-representing energy dissipation in the test bearings, is estimated from the area inside the local hysteresis loop of the load versus the bearing deflection curve. The measurements show that structural stiffnesses and loss factors of the test bearings significantly rely on applied preloads and bearing deflections. Local structural stiffnesses of the test bearings increase with applied preloads but decrease with bearing deflections. Changes of loss factors are less sensitive to applied preloads and bearing deflections compared to those of structural stiffnesses. Up to 35% variability in static load structural stiffnesses is found between bearings, while up to 30% variability in loss factors is found between bearings.
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