Effects of silicon doping on low-friction and high-hardness diamond-like carbon coating via filtered cathodic vacuum arc deposition

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초록

In this study, silicon (Si) was doped on a tetrahedral amorphous carbon (ta-C) coating and the tribological characteristics of the resulting Si-doped diamond-like carbon (DLC; a-C:Si:H) were investigated against a SUJ2 ball. The Si fraction in the coating was varied from 0 to similar to 20 at.% by increasing the trimethylsilane gas flow rate during filtered cathodic vacuum arc deposition. The coefficient of friction (CoF) showed no obvious change when the Si fraction was less than similar to 7 at.%. However, after Si doping, it significantly decreased when the Si fraction was greater than similar to 8 at.%. The running-in period also decreased to less than 1000 cycles after Si doping. The rapid formation of Si-rich debris and transfer layer led to the fabrication of a low-friction tribofilm, which was induced by the tribochemical reaction with moisture under ambient conditions. When the Si fraction was similar to 17 at.%, the lowest CoF of less than 0.05 was obtained. Further Si doping beyond the critical point led to the destruction of the film because of reduced hardness.

키워드

TRIBOLOGICAL PROPERTIES; THERMAL-STABILITY; FILMS; DLC; MICROSTRUCTURE; CORROSION; BEHAVIOR; IMPROVEMENT; SURFACE; STEEL
제목
Effects of silicon doping on low-friction and high-hardness diamond-like carbon coating via filtered cathodic vacuum arc deposition
저자
Kim, Jae-Il; Jang, Young-Jun; Kim, Jisoo; Kim, Jongkuk
DOI
10.1038/s41598-021-83158-4
발행일
2021-02-11
유형
Article
저널명
Scientific Reports
권
11
호
1