This work reports on an analysis of titanium nitride layers deposited by the PVD method and changes induced in the deposit during interaction with a laser beam. Layers up to 850 nm thick were deposited by Ti target sputtering into an atmosphere of reactive gas. Layer phase composition, lattice parameter, interplanar spacing and preferential orientation of crystallites in the layer were investigated by X-ray diffraction analysis. The mean grain size and micro strain in the deposit were defined from peak line broadening in the CuK alpha spectrum. Crystallite size was defined additionally by scanning tunnelling microscopy (STM), before and after laser beam treatment
Polycrystalline, smooth, and hard thin films of TiN are successfully deposited on AISI-304 substrat...
The multipulse excimer laser-reactive ablation of a titanium target in nitrogen has been found to re...
The heterogeneous formation of TiN layers on titanium-based alloys has been demonstrated by surface ...
Titanium nitride (TiN) thin films were deposited by reactive pulsed laser deposition (RPLD) techniqu...
A study of the laser direct writing of titanium nitride on mild steel substrates by pytolytic laser-...
Two PVD titanium nitride based coatings; monolayer TiN and multilayer resulting from the stacking of...
Two PVD titanium nitride based coatings; monolayer TiN and multilayer resulting from the stacking of...
The formation of TiN layers on metallic substrates is investigated as a function of processing varia...
TiN films were deposited directly on Cu substrates by a cathodic are plasma deposition technique. Th...
A multilayer system consisting of TiN and TiAlN layers is deposited by means of a PVD process onto s...
Abstract: Titanium nitride thin films deposited by reactive dc magnetron sputtering under various su...
High quality TiN films were synthesised from elemental metallic target using reactive and plasma ass...
Titanium nitride (TiNx) thin films were grown by DC (Direct Current) magnetron sputtering method ont...
Titanium nitride (TiNx) thin films were grown by DC (Direct Current) magnetron sputtering method ont...
Titanium nitride (TiN) films have been deposited by physical vapour deposition (PVD), with BALZER eq...
Polycrystalline, smooth, and hard thin films of TiN are successfully deposited on AISI-304 substrat...
The multipulse excimer laser-reactive ablation of a titanium target in nitrogen has been found to re...
The heterogeneous formation of TiN layers on titanium-based alloys has been demonstrated by surface ...
Titanium nitride (TiN) thin films were deposited by reactive pulsed laser deposition (RPLD) techniqu...
A study of the laser direct writing of titanium nitride on mild steel substrates by pytolytic laser-...
Two PVD titanium nitride based coatings; monolayer TiN and multilayer resulting from the stacking of...
Two PVD titanium nitride based coatings; monolayer TiN and multilayer resulting from the stacking of...
The formation of TiN layers on metallic substrates is investigated as a function of processing varia...
TiN films were deposited directly on Cu substrates by a cathodic are plasma deposition technique. Th...
A multilayer system consisting of TiN and TiAlN layers is deposited by means of a PVD process onto s...
Abstract: Titanium nitride thin films deposited by reactive dc magnetron sputtering under various su...
High quality TiN films were synthesised from elemental metallic target using reactive and plasma ass...
Titanium nitride (TiNx) thin films were grown by DC (Direct Current) magnetron sputtering method ont...
Titanium nitride (TiNx) thin films were grown by DC (Direct Current) magnetron sputtering method ont...
Titanium nitride (TiN) films have been deposited by physical vapour deposition (PVD), with BALZER eq...
Polycrystalline, smooth, and hard thin films of TiN are successfully deposited on AISI-304 substrat...
The multipulse excimer laser-reactive ablation of a titanium target in nitrogen has been found to re...
The heterogeneous formation of TiN layers on titanium-based alloys has been demonstrated by surface ...