The hardness and stress of amorphous carbon films prepared by glow discharge and by ion beam assisting deposition are investigated. Relatively hard and almost stress free amorphous carbon films were deposited by the glow discharge technique. On the other hand, by using the ion beam assisting deposition, hard films were also obtained with a stress of the same order of those found in tetrahedral amorphous carbon films. A structural analysis indicates that all films are composed of a sp²-rich network. These results contradict the currently accepted concept that both stress and hardness are only related to the concentration of sp³ sites. Furthermore, the same results also indicate that the sp² sites may also contribute to the hardness of the fi...
Abstract – The result of the researches of amor-phous hydrogenated carbon (DLC) films deposi-tion on...
Amorphisation mechanisms during Physical Vapour Deposition of diamondlike carbon films are presented...
Hydrogen-free amorphous carbon films with hardness up to 75 GPa have been deposited by special pulse...
The hardness and stress of amorphous carbon films prepared by glow discharge and by ion beam assisti...
The hardness and stress of amorphous carbon lms prepared by glow discharge and by ion beam assisting...
Hydrogenated amorphous carbon thin films have attracted great interest because of their mechanical, ...
Amorphous carbon films with a high hardness usually suffer from high internal stress. To deposit fil...
We report a study of amorphous carbon films prepared by ion beam assisted deposition (IBAD). X-ray a...
The structural, optical, electrical and physical properties of amorphous carbon deposited from the f...
Amorphous hard carbon films formed by vacuum arc deposition are hydrogen-free, dense, and very hard....
It is now well proved that superior mechanical properties may be achieved not only with crystalline ...
A highly tetrahedrally bonded form on nonhydrogenated amorphous carbon (a-C) is produced by depositi...
Hydrogen-free amorphous carbon films with hardness comparable to crystalline superhard materials hav...
Cathodic arc deposition combined with macroparticle filtering of the plasma is an efficient and vers...
We have studied the problem of intrinsic stress in tetrahedral amorphous carbon. Our methodology was...
Abstract – The result of the researches of amor-phous hydrogenated carbon (DLC) films deposi-tion on...
Amorphisation mechanisms during Physical Vapour Deposition of diamondlike carbon films are presented...
Hydrogen-free amorphous carbon films with hardness up to 75 GPa have been deposited by special pulse...
The hardness and stress of amorphous carbon films prepared by glow discharge and by ion beam assisti...
The hardness and stress of amorphous carbon lms prepared by glow discharge and by ion beam assisting...
Hydrogenated amorphous carbon thin films have attracted great interest because of their mechanical, ...
Amorphous carbon films with a high hardness usually suffer from high internal stress. To deposit fil...
We report a study of amorphous carbon films prepared by ion beam assisted deposition (IBAD). X-ray a...
The structural, optical, electrical and physical properties of amorphous carbon deposited from the f...
Amorphous hard carbon films formed by vacuum arc deposition are hydrogen-free, dense, and very hard....
It is now well proved that superior mechanical properties may be achieved not only with crystalline ...
A highly tetrahedrally bonded form on nonhydrogenated amorphous carbon (a-C) is produced by depositi...
Hydrogen-free amorphous carbon films with hardness comparable to crystalline superhard materials hav...
Cathodic arc deposition combined with macroparticle filtering of the plasma is an efficient and vers...
We have studied the problem of intrinsic stress in tetrahedral amorphous carbon. Our methodology was...
Abstract – The result of the researches of amor-phous hydrogenated carbon (DLC) films deposi-tion on...
Amorphisation mechanisms during Physical Vapour Deposition of diamondlike carbon films are presented...
Hydrogen-free amorphous carbon films with hardness up to 75 GPa have been deposited by special pulse...