It is now well proved that superior mechanical properties may be achieved not only with crystalline diamond but also by amorphous carbon films. They allow the unique combination of very high hardness (40 - 80 GPa), low friction (dry, against steel: 0.1 - 0.2) and high smoothness. By special measures the usually high level of intrinsic compressive stresses may be reduced down to about 1 GPa. These properties together with the low deposition temperature are made possible by using particles with high kinetic energies of some ten eV. According to the subplantation model the impinging particles penetratethe surface. In this way the film grows from the interior outwards instead of island-like condensation on the surface typical for lower energies...
The relation was investigated between the compressive stress, the substrate temperature and the micr...
The relation was investigated between the compressive stress, the substrate temperature and the micr...
During the nineties the Laser-Arc technology for the deposition of superhard amorphous carbon films ...
Amorphous hydrogen-free carbon films (a-C) combine the outstanding properties of diamond with those ...
Hydrogen-free amorphous carbon films with hardness comparable to crystalline superhard materials hav...
The principal deposition conditions for the preparation of hard amorphous carbon films with hardness...
The DOE has been supporting Professor Chang and his students in the area of plasma and photon synthe...
Amorphous hard carbon films formed by vacuum arc deposition are hydrogen-free, dense, and very hard....
Hydrogen-free amorphous carbon films with hardness up to 75 GPa have been deposited by special pulse...
An overview is given on the deposition, properties and applications of dense amorphous carbon films ...
The structural, optical, electrical and physical properties of amorphous carbon deposited from the f...
The LASER-ARC, a controlled pulsed arc plasma source combining advantages of the pulsed laser deposi...
Amorphous carbon films with variable sp{sup 3} content were produced by ArF (193nm) pulsed laser dep...
During the 1990s, the Laser-Arc technology for the deposition of superhard amorphous carbon films (D...
The hardness and stress of amorphous carbon films prepared by glow discharge and by ion beam assisti...
The relation was investigated between the compressive stress, the substrate temperature and the micr...
The relation was investigated between the compressive stress, the substrate temperature and the micr...
During the nineties the Laser-Arc technology for the deposition of superhard amorphous carbon films ...
Amorphous hydrogen-free carbon films (a-C) combine the outstanding properties of diamond with those ...
Hydrogen-free amorphous carbon films with hardness comparable to crystalline superhard materials hav...
The principal deposition conditions for the preparation of hard amorphous carbon films with hardness...
The DOE has been supporting Professor Chang and his students in the area of plasma and photon synthe...
Amorphous hard carbon films formed by vacuum arc deposition are hydrogen-free, dense, and very hard....
Hydrogen-free amorphous carbon films with hardness up to 75 GPa have been deposited by special pulse...
An overview is given on the deposition, properties and applications of dense amorphous carbon films ...
The structural, optical, electrical and physical properties of amorphous carbon deposited from the f...
The LASER-ARC, a controlled pulsed arc plasma source combining advantages of the pulsed laser deposi...
Amorphous carbon films with variable sp{sup 3} content were produced by ArF (193nm) pulsed laser dep...
During the 1990s, the Laser-Arc technology for the deposition of superhard amorphous carbon films (D...
The hardness and stress of amorphous carbon films prepared by glow discharge and by ion beam assisti...
The relation was investigated between the compressive stress, the substrate temperature and the micr...
The relation was investigated between the compressive stress, the substrate temperature and the micr...
During the nineties the Laser-Arc technology for the deposition of superhard amorphous carbon films ...