대기압/진공 조건의 트라이보 시험기를 이용한 박막 코팅의 마찰/마모 특성 비교Comparison of Friction and Wear Characteristics of Thin Film Coatings Using Tribotesters at Atmospheric/Vacuum Conditions
- Other Titles
- Comparison of Friction and Wear Characteristics of Thin Film Coatings Using Tribotesters at Atmospheric/Vacuum Conditions
- Authors
- 김해진; 김대은; 김창래
- Issue Date
- 2019
- Publisher
- 한국트라이볼로지학회
- Keywords
- 대기압; 코팅; 마찰; 진공; 마모; atmospheric pressure; coating; friction; vacuum; wear
- Citation
- 한국트라이볼로지학회지, v.35, no.6, pp 389 - 395
- Pages
- 7
- Indexed
- KCI
- Journal Title
- 한국트라이볼로지학회지
- Volume
- 35
- Number
- 6
- Start Page
- 389
- End Page
- 395
- URI
- https://scholarworks.gnu.ac.kr/handle/sw.gnu/9950
- DOI
- 10.9725/kts.2019.35.6.389
- ISSN
- 2713-8011
- Abstract
- In various industries, thin film coatings are used to improve friction and wear characteristics. Various types of tribotesters are used to evaluate the friction and wear characteristics of such thin film coatings. In this study, we fabricated a micro-tribotester and Tribo-scanning electron microscopy (SEM) to compare the friction and wear characteristics of copper (Cu) coatings under an atmospheric pressure and a vacuum condition, respectively. The reliability of the different types of tribotesters was evaluated by performing calibrations for the sensor to measure the friction forces and normal loads. Using the two different types of devices, the friction and wear tests are conducted at the same experimental conditions excluding environment conditions such as the atmospheric pressure and vacuum condition. The friction coefficient at the vacuum condition is lower than at the atmospheric pressure. This difference in friction characteristics is due to the fact that wear phenomena occur differently according to the atmospheric pressure and vacuum condition. At the atmospheric pressure, the abrasive wear is the main wear mechanism. At the vacuum condition, the adhesive wear is the main wear mechanism. The reason for the difference in the wear mechanism of the Cu coating at the atmospheric pressure and the vacuum condition is that the oxidation phenomenon, which does not appear at the vacuum condition, occurs at the atmospheric pressure; therefore, the characteristics of the Cu coating change accordingly.
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Collections - 공학계열 > Division of Mechanical and Aerospace Engineering > Journal Articles

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