Nanostructured tungsten (nanoW) coatings have been deposited by DC magnetron sputtering. First, the influence of the sputtering power on the adhesion of the coatings to the substrate was investigated by depositing coatings at powers varying from 30 up to 220 W. Non-delaminated coatings were achieved at powers ≤50 W. Second, the influence of coating thickness on the morphological, microstructural and mechanical properties was investigated for films deposited at 50 W with thicknesses varying from 30 nm up to ∼4.0 um. SEM images reveal that all the films are highly compact, consisting of nanometer sized columns that grow perpendicular to the substrate. XRD data evidence that films are monophasic, being made of pure a-phase. All coatings show c...
Sputter-deposited W films with nominal thicknesses between 5 and 180 nm were prepared by varying the...
Several W-B-C layers were prepared by magnetron sputtering. The microstructure of thin layers was ob...
Nanostructured Ni-W alloy coatings containing approximately 40 wt.% tungsten were electrodeposited o...
© 2014 Elsevier B.V. All rights reserved. Nanostructured tungsten (nanoW) coatings have been deposit...
International audienceIn this paper, the structure of nanometer tungsten thin films has been correla...
Extreme environments associated with nuclear applications often results in degradation of the physic...
Extreme environments associated with nuclear applications often results in degradation of the physic...
Tungsten oxide coatings were deposited without substrate bias by DC reactive magnetron sputtering of...
International audienceNanostructured tungsten thin films have been obtained by ion beam sputtering t...
The effect of sputtering pressure on the surface/interface microstructure, crystal phase, mechanical...
The in plane coefficient of thermal expansion (CTE) and the residual stress of nanostructured W base...
International audienceThe functional properties of both electrodeposited and sputtered nickel and Ni...
In this paper, W-doped C-based coatings were deposited on steel and silicon substrates by RF magnetr...
W---Si---N films were deposited by reactive sputtering in a N2+Ar atmosphere from a W target incrust...
In this article, atomic force microscopy was used for nanoscale characterization of ultra-thin tungs...
Sputter-deposited W films with nominal thicknesses between 5 and 180 nm were prepared by varying the...
Several W-B-C layers were prepared by magnetron sputtering. The microstructure of thin layers was ob...
Nanostructured Ni-W alloy coatings containing approximately 40 wt.% tungsten were electrodeposited o...
© 2014 Elsevier B.V. All rights reserved. Nanostructured tungsten (nanoW) coatings have been deposit...
International audienceIn this paper, the structure of nanometer tungsten thin films has been correla...
Extreme environments associated with nuclear applications often results in degradation of the physic...
Extreme environments associated with nuclear applications often results in degradation of the physic...
Tungsten oxide coatings were deposited without substrate bias by DC reactive magnetron sputtering of...
International audienceNanostructured tungsten thin films have been obtained by ion beam sputtering t...
The effect of sputtering pressure on the surface/interface microstructure, crystal phase, mechanical...
The in plane coefficient of thermal expansion (CTE) and the residual stress of nanostructured W base...
International audienceThe functional properties of both electrodeposited and sputtered nickel and Ni...
In this paper, W-doped C-based coatings were deposited on steel and silicon substrates by RF magnetr...
W---Si---N films were deposited by reactive sputtering in a N2+Ar atmosphere from a W target incrust...
In this article, atomic force microscopy was used for nanoscale characterization of ultra-thin tungs...
Sputter-deposited W films with nominal thicknesses between 5 and 180 nm were prepared by varying the...
Several W-B-C layers were prepared by magnetron sputtering. The microstructure of thin layers was ob...
Nanostructured Ni-W alloy coatings containing approximately 40 wt.% tungsten were electrodeposited o...