AbstractVanadium nitride coatings were deposited via magnetron reactive sputtering system with varying nitrogen partial pressures and negative substrate bias to further understand the influence of the sputtering conditions on the microstructure and the mechanical performance. Grazing incidence X-ray diffraction, field emission scanning electron microscopy equipped with energy dispersive X-ray and X-ray photoelectron spectroscopy were used to characterize the microstructure; nano-hardness tester and profilometer were used to measure the mechanical performance. By varying the nitrogen partial pressures from 0.007Pa to 0.29Pa, more compact coating with higher hardness (22.9GPa) was achieved at 0.29Pa. In parallel, the influence of bias voltage...
TixAl1-xN coatings were grown using the triode magnetron sputtering technique with various bias volt...
The structure, hardness, friction and wear of tungsten nitrides prepared by d.c. reactive magnetron ...
The current economic and ecological situation encourages the use of steel to push the technological ...
AbstractVanadium nitride coatings were deposited via magnetron reactive sputtering system with varyi...
Vanadium nitride (VN) coatings were deposited via reactive DC magnetron sputtering technique on a ho...
International audienceVanadium carbide coatings were deposited by R.F. reactive magnetron sputtering...
We investigated the effect of film thickness on the structure and properties of VN coatings deposite...
Titanium nitride (TiN) coatings were deposited by d.c. reactive magnetron sputtering process. The fi...
Thin metal nitride films deposited by Physical Vapor Deposition (PVD) are used amongst many other ap...
Vanadium nitride, a Group-VB transition-metal nitride, has a long history of milestones as a materia...
Compounds based on nitrides of the transition metals of group IVB-VIB of the periodic table exhibit ...
In this work we present the technique of magnetron vapor deposition and the effect of several deposi...
Titanium nitride (TiN) coatings were deposited by d.c. reactive magnetron sputtering process. The fi...
Vanadium nitride thin films have been deposited on to quartz substrates by de magnetron sputtering a...
AbstractTernary nitride hard coatings are known of excellent wear characteristics which have proved ...
TixAl1-xN coatings were grown using the triode magnetron sputtering technique with various bias volt...
The structure, hardness, friction and wear of tungsten nitrides prepared by d.c. reactive magnetron ...
The current economic and ecological situation encourages the use of steel to push the technological ...
AbstractVanadium nitride coatings were deposited via magnetron reactive sputtering system with varyi...
Vanadium nitride (VN) coatings were deposited via reactive DC magnetron sputtering technique on a ho...
International audienceVanadium carbide coatings were deposited by R.F. reactive magnetron sputtering...
We investigated the effect of film thickness on the structure and properties of VN coatings deposite...
Titanium nitride (TiN) coatings were deposited by d.c. reactive magnetron sputtering process. The fi...
Thin metal nitride films deposited by Physical Vapor Deposition (PVD) are used amongst many other ap...
Vanadium nitride, a Group-VB transition-metal nitride, has a long history of milestones as a materia...
Compounds based on nitrides of the transition metals of group IVB-VIB of the periodic table exhibit ...
In this work we present the technique of magnetron vapor deposition and the effect of several deposi...
Titanium nitride (TiN) coatings were deposited by d.c. reactive magnetron sputtering process. The fi...
Vanadium nitride thin films have been deposited on to quartz substrates by de magnetron sputtering a...
AbstractTernary nitride hard coatings are known of excellent wear characteristics which have proved ...
TixAl1-xN coatings were grown using the triode magnetron sputtering technique with various bias volt...
The structure, hardness, friction and wear of tungsten nitrides prepared by d.c. reactive magnetron ...
The current economic and ecological situation encourages the use of steel to push the technological ...