A diamond-like carbon (DLC) based solid-lubricant film was designed and DLC films were successfully prepared using a microwave plasma enhanced magnetron sputtering deposition technology. Post-test characterizations including Raman spectrometry, X-ray diffraction, nano-indentation test, adhesion test, friction coefficient test were performed to study the influence of substrate bias voltage on the mechanical properties of the W- and S-doped DLC films. The results indicated that the W- and S-doped DLC films also had the typical structure of DLC films and a better mechanical performance achieved by the application of a substrate bias of -200V
Diamond-like carbon (DLC) is a metastable form of amorphous carbon having large sp3 bonding. DLC fil...
Diamond-like carbon (DLC) coatings are used in automotive engines for decreasing friction and increa...
Diamond-like carbon (DLC) is a metastable form of amorphous carbon having large sp 3 bonding. DLC fi...
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...
In this study, the structure and tribological performance of the diamondlike carbon (DLC) films were...
Adhesion between the film and the substrate is a key factor to determine the performance of the film...
W incorporated diamond-like carbon (W-DLC) films were deposited on silicon (100) wafers by a hybrid ...
Diamond-like carbon is one of the most studied and used solid lubricants on the market. Despite this...
Diamond-like carbon is one of the most studied and used solid lubricants on the market. Despite this...
Al-diamond-like carbon films were successfully deposited by the reactive magnetron sputtering of Al ...
AbstractTwo kinds of diamond-like carbon films containing Ti, C and Ti, Cr, C were prepared by magne...
International audienceExcellent tribological behaviour such as high wear resistance and very low fri...
International audienceExcellent tribological behaviour such as high wear resistance and very low fri...
International audienceExcellent tribological behaviour such as high wear resistance and very low fri...
Diamond-like carbon (DLC) is a metastable form of amorphous carbon having large sp3 bonding. DLC fil...
Diamond-like carbon (DLC) coatings are used in automotive engines for decreasing friction and increa...
Diamond-like carbon (DLC) is a metastable form of amorphous carbon having large sp 3 bonding. DLC fi...
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...
In this study, the structure and tribological performance of the diamondlike carbon (DLC) films were...
Adhesion between the film and the substrate is a key factor to determine the performance of the film...
W incorporated diamond-like carbon (W-DLC) films were deposited on silicon (100) wafers by a hybrid ...
Diamond-like carbon is one of the most studied and used solid lubricants on the market. Despite this...
Diamond-like carbon is one of the most studied and used solid lubricants on the market. Despite this...
Al-diamond-like carbon films were successfully deposited by the reactive magnetron sputtering of Al ...
AbstractTwo kinds of diamond-like carbon films containing Ti, C and Ti, Cr, C were prepared by magne...
International audienceExcellent tribological behaviour such as high wear resistance and very low fri...
International audienceExcellent tribological behaviour such as high wear resistance and very low fri...
International audienceExcellent tribological behaviour such as high wear resistance and very low fri...
Diamond-like carbon (DLC) is a metastable form of amorphous carbon having large sp3 bonding. DLC fil...
Diamond-like carbon (DLC) coatings are used in automotive engines for decreasing friction and increa...
Diamond-like carbon (DLC) is a metastable form of amorphous carbon having large sp 3 bonding. DLC fi...