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Tribochemical Interactions of Si-doped DLC Film Against Steel in Sliding Contact
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  • Tribochemical Interactions of Si-doped DLC Film Against Steel in Sliding Contact
  • Tribochemical Interactions of Si-doped DLC Film Against Steel in Sliding Contact
저자명
Pham. Duc-Cuong,Ahn. Hyo-Sok,Oh. Jae-Eung,Yoon. Eui-Sung
간행물명
Journal of mechanical science and technology
권/호정보
2007년|21권 7호|pp.1083-1089 (7 pages)
발행정보
대한기계학회
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
서지반출

기타언어초록

This study concerns the effects of tribochemical interactions at the interface of Si-DLC (silicon-doped diamond-like carbon) film and steel ball in sliding contact on tribological properties of the film. The Si-DLC film was over-coated on pure DLC coating by radio frequency plasma-assisted chemical vapor deposition (r.f. PACVD) with different Si concentration. Friction tests against steel ball using a reciprocating type tribotester were performed in ambient environment. X-Ray photoelectron spectroscopy (XPS) and auger electron spectroscopy (AES) were used to study the chemical characteristics and elemental composition of the films and mating balls after tests. Results showed a dark-gray film consisting of carbon, oxygen and silicon on the worn steel ball surface with different thickness. On the contrary, such film was not observed on the surface of the ball slid against pure DLC coating. The oxidation of Si-DLC surface and steel ball was also found at particular regions of contact area. This demonstrates that tribochemical interactions occurred at the contact area of Si-DLC and steel ball during sliding to form a tribofilm (so called transfer film) on the ball specimen. While the pure DLC coating exhibited high coefficient of friction $(sim0.06)$, the Si-DLC film showed a significant lower coefficient of friction $(sim0.022)$ with the presence of tribofilm on mating ball surface. However, the Si-DLC film possesses a very high wear rate in comparison with the pure DLC. It was found that the tribochemical interactions strongly affected tribological properties of the Si-DLC film in sliding against steel.