Titanium nitride (TiN) coatings were deposited onmild steel (MS) by direct current reactivemagnetron sputtering. With the aim of improving the corrosion resistance of TiN, an additional nickel interlayer was brush plated on the steel substrates before TiN film formation. The phases have been identified with X-ray diffraction analysis. The hardness values of TiN layers were found to increase with the increase in thickness of the Ni interlayer. The wear track investigations of TiN layers showed that the TiN/MS system was worn out by abrasive wear mechanism while on the film with Ni interlayer is by adhesive wear. It was found that the TiN/Ni/MS stack had a weaker tendency towards corrosion and higher corrosion resistance in 3?5%NaCl th...
[[abstract]]TiN films are prepared on low carbon steel with a titanium interlayer by reactive RF pla...
Hard coatings are widely used in cutting and forming tool industries. Titanium Nitride (TiN) possess...
Titanium nitride coatings, because of their high hardness, resistance to corrosion and wear and gold...
[[abstract]]An electroless nickel deposit is introduced as an interlayer between a carbon steel subs...
Thin films of titanium nitride (TiN) were prepared on mild steel (MS) by a physical vapor deposition...
Thin nanocrystalline Titanium nitride (TiN) films were deposited on mild steel (MS) substrates usin...
Titanium nitride (TiN) films were deposited on AISI 316L stainless steel substrates by reactive magn...
TiN films on mild steel were deposited by reactive d.c. magnetron sputtering; electroplated chromium...
[[abstract]]Titanium nitride films were deposited on AISI 304 steel with a hollow-cathode-discharge ...
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...
TiN, NbN and TiN/NbN multilayer coatings were deposited on tool steel substrates using a reactive DC...
[[abstract]]Titanium nitride (TiN) was deposited on AISI 304 stainless steel using a hollow cathode ...
In this study, TiN and TiAlN coatings were deposited on AISI 316 L stainless steel substrates by PVD...
This study aims to assess corrosion resistance on multilayer coatings of [TiCN/TiNbCN]n in a physiol...
[[abstract]]TiN films are prepared on low carbon steel with a titanium interlayer by reactive RF pla...
Hard coatings are widely used in cutting and forming tool industries. Titanium Nitride (TiN) possess...
Titanium nitride coatings, because of their high hardness, resistance to corrosion and wear and gold...
[[abstract]]An electroless nickel deposit is introduced as an interlayer between a carbon steel subs...
Thin films of titanium nitride (TiN) were prepared on mild steel (MS) by a physical vapor deposition...
Thin nanocrystalline Titanium nitride (TiN) films were deposited on mild steel (MS) substrates usin...
Titanium nitride (TiN) films were deposited on AISI 316L stainless steel substrates by reactive magn...
TiN films on mild steel were deposited by reactive d.c. magnetron sputtering; electroplated chromium...
[[abstract]]Titanium nitride films were deposited on AISI 304 steel with a hollow-cathode-discharge ...
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...
TiN, NbN and TiN/NbN multilayer coatings were deposited on tool steel substrates using a reactive DC...
[[abstract]]Titanium nitride (TiN) was deposited on AISI 304 stainless steel using a hollow cathode ...
In this study, TiN and TiAlN coatings were deposited on AISI 316 L stainless steel substrates by PVD...
This study aims to assess corrosion resistance on multilayer coatings of [TiCN/TiNbCN]n in a physiol...
[[abstract]]TiN films are prepared on low carbon steel with a titanium interlayer by reactive RF pla...
Hard coatings are widely used in cutting and forming tool industries. Titanium Nitride (TiN) possess...
Titanium nitride coatings, because of their high hardness, resistance to corrosion and wear and gold...