Ti–B–(N) coatings have been deposited by DC magnetron sputtering using TiB2 targets in Ar/N2 gas mixtures. The influence of bias voltage and nitrogen flow on the mechanical and tribological properties of these coatings has been studied. Mechanical properties have been evaluated by ultra-microindentation techniques and scratch testing; tribology tests have been performed in a pin-on-disc apparatus with controlled humidity conditions. Microstructural characterization by X-ray diffraction (XRD) and Transmission Electron Microscopy (TEM) demonstrates the nanocrystalline structure of Ti–B–(N) coatings and allows the interpretation of their mechanical behaviour. Hardness values up to 58 GPa have been achieved, depending on deposition conditions...
Titanium–boron–nitrogen (Ti–B–N) films were deposited by DC reactive magnetron sputtering using sing...
Article in pressWithin the frame of this work, low temperature Ti–Si–C films were deposited on high-...
AbstractThe nanotribological studies are needed to develop fundamental understanding of interfacial ...
This paper reports on the mechanical and high pressure tribological properties of nanocrystalline (n...
Attempts have been made to fabricate the superhard coatings with the purpose to reduce the wear and ...
Nanocomposite coatings consisting of Ti(C,N) nanocrystallites embedded in an amorphous carbon-based ...
Ti–Si–C thin films were deposited onto silicon, stainless steel and high-speed steel substrates by m...
TiCrAlN and CrTiAlN multicomponent coatings have been developed using closed-field unbalanced magnet...
TiCrAlN and CrTiAlN multicomponent coatings have been developed using closed-field unbalanced magnet...
Mo-Mo2N nanocomposite coating was produced by reactive magnetron sputtering of a molybdenum target, ...
Ti–Si–B–C–N film was deposited by DC magnetron sputtering at different argon and nitrogen ratios suc...
Mo-Mo2N nanocomposite coating was produced by reactive magnetron sputtering of a molybdenum target, ...
TiB2 coating comprises a large number of ionic and covalent bonds, conferring it with excellent prop...
Grown by reactive unbalanced magnetron sputtering in a mixed N2 and CH4 gaseous medium, heterogeneou...
A series of Ti–B–(N) coatings prepared by dc magnetron sputtering using TiB2 targets in Ar/N2 gas mi...
Titanium–boron–nitrogen (Ti–B–N) films were deposited by DC reactive magnetron sputtering using sing...
Article in pressWithin the frame of this work, low temperature Ti–Si–C films were deposited on high-...
AbstractThe nanotribological studies are needed to develop fundamental understanding of interfacial ...
This paper reports on the mechanical and high pressure tribological properties of nanocrystalline (n...
Attempts have been made to fabricate the superhard coatings with the purpose to reduce the wear and ...
Nanocomposite coatings consisting of Ti(C,N) nanocrystallites embedded in an amorphous carbon-based ...
Ti–Si–C thin films were deposited onto silicon, stainless steel and high-speed steel substrates by m...
TiCrAlN and CrTiAlN multicomponent coatings have been developed using closed-field unbalanced magnet...
TiCrAlN and CrTiAlN multicomponent coatings have been developed using closed-field unbalanced magnet...
Mo-Mo2N nanocomposite coating was produced by reactive magnetron sputtering of a molybdenum target, ...
Ti–Si–B–C–N film was deposited by DC magnetron sputtering at different argon and nitrogen ratios suc...
Mo-Mo2N nanocomposite coating was produced by reactive magnetron sputtering of a molybdenum target, ...
TiB2 coating comprises a large number of ionic and covalent bonds, conferring it with excellent prop...
Grown by reactive unbalanced magnetron sputtering in a mixed N2 and CH4 gaseous medium, heterogeneou...
A series of Ti–B–(N) coatings prepared by dc magnetron sputtering using TiB2 targets in Ar/N2 gas mi...
Titanium–boron–nitrogen (Ti–B–N) films were deposited by DC reactive magnetron sputtering using sing...
Article in pressWithin the frame of this work, low temperature Ti–Si–C films were deposited on high-...
AbstractThe nanotribological studies are needed to develop fundamental understanding of interfacial ...