TiN/Ti multilayers, 1.74-9.80 ?m thick, were deposited on 304 stainless steel substrates by reactive unbalanced magnetron sputtering. It is known that such multilayers can improve the corrosion resistance of the stainless steel. The titanium layers help to reduce the occurrence of pinholes that arise because of the irregularities in substrate surface, and decrease the porosity of subsequent TiN coatings by improving the layers microstructure. A 1400 keV deuterium beam was used to analyse the samples and combinations of RBS/NRA methods were applied to evaluate the sample spectra. The 14N(d, ?1) 12C NR cross sections are well known and were used as way to determine the 14N concentration in the TiNx layers. The corrosion resistance of the laye...
Corrosion protection properties of cerium-passivated, unpassivated and chromium-passivated tinplates...
The development of multilayered structures has attracted attention from scientific community during ...
The corrosion behavior of TiN, CrN, NbN, TiAlN, TiAlN/CrN coatings deposited on mild steel substrate...
TiN/Ti multilayers, 1.74-9.80 μm thick, were deposited on 304 stainless steel substrates by reactive...
Austenitic stainless steel can be attack by localized corrosion in saline environments, such as seaw...
Metal-ceramic multilayers were deposited by reactive magnetron sputtering with the aim to simultaneo...
TiN, NbN and TiN/NbN multilayer coatings were deposited on tool steel substrates using a reactive DC...
The microstructure and chemistry of TiN coatings on AISI 304 stainless steel was analyzed by an ener...
Ti/TiN multilayered coatings of 200 layers with the thickness of 1.5 μm were deposited by a reactive...
TiN and Ti coatings were deposited by d.c. magnetron sputtering on a Zn-Al-Cu alloy. The coatings we...
The goal of this work was to study electrochemical behaviour in corrosion-erosion conditions for Ti(...
This study aims to assess corrosion resistance on multilayer coatings of [TiCN/TiNbCN]n in a physiol...
[[abstract]]Titanium nitride (TiN) was deposited on AISI 304 stainless steel using a hollow cathode ...
Titanium nitride (TiN) coatings were deposited onmild steel (MS) by direct current reactivemagnetron...
TiN thin films have been deposited by magnetron sputtering (DC) method under pure argon (100% Ar) ga...
Corrosion protection properties of cerium-passivated, unpassivated and chromium-passivated tinplates...
The development of multilayered structures has attracted attention from scientific community during ...
The corrosion behavior of TiN, CrN, NbN, TiAlN, TiAlN/CrN coatings deposited on mild steel substrate...
TiN/Ti multilayers, 1.74-9.80 μm thick, were deposited on 304 stainless steel substrates by reactive...
Austenitic stainless steel can be attack by localized corrosion in saline environments, such as seaw...
Metal-ceramic multilayers were deposited by reactive magnetron sputtering with the aim to simultaneo...
TiN, NbN and TiN/NbN multilayer coatings were deposited on tool steel substrates using a reactive DC...
The microstructure and chemistry of TiN coatings on AISI 304 stainless steel was analyzed by an ener...
Ti/TiN multilayered coatings of 200 layers with the thickness of 1.5 μm were deposited by a reactive...
TiN and Ti coatings were deposited by d.c. magnetron sputtering on a Zn-Al-Cu alloy. The coatings we...
The goal of this work was to study electrochemical behaviour in corrosion-erosion conditions for Ti(...
This study aims to assess corrosion resistance on multilayer coatings of [TiCN/TiNbCN]n in a physiol...
[[abstract]]Titanium nitride (TiN) was deposited on AISI 304 stainless steel using a hollow cathode ...
Titanium nitride (TiN) coatings were deposited onmild steel (MS) by direct current reactivemagnetron...
TiN thin films have been deposited by magnetron sputtering (DC) method under pure argon (100% Ar) ga...
Corrosion protection properties of cerium-passivated, unpassivated and chromium-passivated tinplates...
The development of multilayered structures has attracted attention from scientific community during ...
The corrosion behavior of TiN, CrN, NbN, TiAlN, TiAlN/CrN coatings deposited on mild steel substrate...