Abstract Hard coatings used to protect engineering components from external loads and harsh environments should ideally be strong and tough. Here we study the fracture toughness, K IC, of Ti1−xAlxN upon annealing by employing micro-fracture experiments on freestanding films. We found that K IC increases by about 11% when annealing the samples at 900 °C, because the decomposition of the supersaturated matrix leads to the formation of nanometer-sized domains, precipitation of hexagonal-structured B4 AlN (with their significantly larger specific volume), formation of stacking faults, and nano-twins. In contrast, for TiN, where no decomposition processes and formation of nanometer-sized domains can be initiated by an annealing treatment, the fr...
AlxTi1-xN/CrN multilayer coatings were fabricated by magnetron sputtering and those hardness variati...
AbstractProtective coatings for high temperature applications, as present e.g. during cutting and mi...
Although titanium nitride is used as a hard protective coating, it is brittle. The multilayering of ...
In contrast to earlier work, where we focused on the evolution of fracture toughness upon annealing ...
The effect of metal alloying on mechanical properties including hardness and fracture toughness were...
Physical or chemical vapor deposited nanocomposite thin films evoke much scientific interest due to ...
Titanium aluminium nitride (TiAlN)-based coatings are designed specially for applications where oxid...
Coherently grown nanolayered thin films are generally known for their superior mechanical properties...
Temperature-dependent nanoindentation testing was employed to investigate the deformation behaviour ...
We review results of recent combined theoretical and experimental studies of Ti1−xAlxN, an archetypi...
TiN monolayer and TiN/Ti multilayer thin films were deposited on commercially pure Ti substrates usi...
Most functional microelectronic devices as well as hard coatings use brittle ceramics like Titanium ...
High pressure and high temperature experiments with a Hall belt apparatus of cathodic arc deposited ...
Nanostructured TiSiN coatings were deposited onto a tool steel substrate. The coated samples were th...
International audienceIndentation tests are performed on a set of Ti1 − xAlxN films prepared in vari...
AlxTi1-xN/CrN multilayer coatings were fabricated by magnetron sputtering and those hardness variati...
AbstractProtective coatings for high temperature applications, as present e.g. during cutting and mi...
Although titanium nitride is used as a hard protective coating, it is brittle. The multilayering of ...
In contrast to earlier work, where we focused on the evolution of fracture toughness upon annealing ...
The effect of metal alloying on mechanical properties including hardness and fracture toughness were...
Physical or chemical vapor deposited nanocomposite thin films evoke much scientific interest due to ...
Titanium aluminium nitride (TiAlN)-based coatings are designed specially for applications where oxid...
Coherently grown nanolayered thin films are generally known for their superior mechanical properties...
Temperature-dependent nanoindentation testing was employed to investigate the deformation behaviour ...
We review results of recent combined theoretical and experimental studies of Ti1−xAlxN, an archetypi...
TiN monolayer and TiN/Ti multilayer thin films were deposited on commercially pure Ti substrates usi...
Most functional microelectronic devices as well as hard coatings use brittle ceramics like Titanium ...
High pressure and high temperature experiments with a Hall belt apparatus of cathodic arc deposited ...
Nanostructured TiSiN coatings were deposited onto a tool steel substrate. The coated samples were th...
International audienceIndentation tests are performed on a set of Ti1 − xAlxN films prepared in vari...
AlxTi1-xN/CrN multilayer coatings were fabricated by magnetron sputtering and those hardness variati...
AbstractProtective coatings for high temperature applications, as present e.g. during cutting and mi...
Although titanium nitride is used as a hard protective coating, it is brittle. The multilayering of ...