In order to well investigate the effect of different substrates on the friction and wear of diamond-like carbon (DLC) coating, the DLC coatings are deposited on substrates like the high-speed steel (HSS), SiC and 304 stainless steel by using plasma enhanced chemical vapor deposition method. The diamond-like carbon is prepared. The microstructure of the coatings is characterized using SEM, TEM and Raman. The SEM results exhibit that the total thickness of the coatings is about 6.5 μm, and there's apparent interfaces between layers. The TEM results imply that the coatings have an amorphous structure. Raman spectrum exhibits that G and D peaks are observed, which implies that the deposition coatings are diamond-like carbon coating. The results...
Diamond-like carbon (DLC) coatings are used in automotive engines for decreasing friction and increa...
Tribological performance of industrial applications involving boundary lubrication regime can be imp...
AbstractThe diamond-like carbon (DLC) films with different thicknesses on 9Cr18 bearing steels were ...
The relationship between the tribological behavior and inherent features of the DLC coatings (i.e. s...
Diamond-like carbon (DE) films are characterized by very low friction coefficients, high wear resist...
There are numerous types of surface coatings available to engineers in order to improve the friction...
International audienceExcellent tribological behaviour such as high wear resistance and very low fri...
This paper comparatively studies the tribological behaviour of different types of diamond-like carbo...
Patterned diamond-like carbon (DLC) coatings were deposited on a Si (100) substrate using the filter...
A plasma enhanced chemical vapour deposition (PECVD) amorphous carbon coating was deposited onto 100...
Currently, the application of diamond-like carbon (DLC) coatings for automotive components is becomi...
A systematic investigation was carried out to observe the deposition rate of a diamond-like carbon (...
In this study, the structure and tribological performance of the diamondlike carbon (DLC) films were...
In this study, the structure and tribological performance of the diamondlike carbon (DLC) films were...
Tribology of Diamond-like Carbon Films discusses important structural, chemical, mechanical and trib...
Diamond-like carbon (DLC) coatings are used in automotive engines for decreasing friction and increa...
Tribological performance of industrial applications involving boundary lubrication regime can be imp...
AbstractThe diamond-like carbon (DLC) films with different thicknesses on 9Cr18 bearing steels were ...
The relationship between the tribological behavior and inherent features of the DLC coatings (i.e. s...
Diamond-like carbon (DE) films are characterized by very low friction coefficients, high wear resist...
There are numerous types of surface coatings available to engineers in order to improve the friction...
International audienceExcellent tribological behaviour such as high wear resistance and very low fri...
This paper comparatively studies the tribological behaviour of different types of diamond-like carbo...
Patterned diamond-like carbon (DLC) coatings were deposited on a Si (100) substrate using the filter...
A plasma enhanced chemical vapour deposition (PECVD) amorphous carbon coating was deposited onto 100...
Currently, the application of diamond-like carbon (DLC) coatings for automotive components is becomi...
A systematic investigation was carried out to observe the deposition rate of a diamond-like carbon (...
In this study, the structure and tribological performance of the diamondlike carbon (DLC) films were...
In this study, the structure and tribological performance of the diamondlike carbon (DLC) films were...
Tribology of Diamond-like Carbon Films discusses important structural, chemical, mechanical and trib...
Diamond-like carbon (DLC) coatings are used in automotive engines for decreasing friction and increa...
Tribological performance of industrial applications involving boundary lubrication regime can be imp...
AbstractThe diamond-like carbon (DLC) films with different thicknesses on 9Cr18 bearing steels were ...