AbstractCoherently grown nanolayered TiN/CrN thin films exhibit a superlattice effect in fracture toughness, similar to the reported effect in indentation hardness. We found –by employing in-situ micromechanical cantilever bending tests on free-standing TiN/CrN superlattice films– that the fracture toughness increases with decreasing bilayer period (Λ), reaching a maximum at Λ~6nm. For ultrathin layers (Λ~2nm), the fracture toughness drops to the lowest value due to intermixing and loss of superlattice structure. Both, fracture toughness and hardness peak for similar bilayer periods of TiN/CrN superlattices
Nanolayered TiN/CrN multilayer coatings were deposited on silicon substrates using a reactive DC mag...
TiN multilayers that alternate with either titanium (ductile) or nanocomposite TiSiN (hard) interlay...
Functionally graded, multilayer coatings consisting of alternating TiN/TiSiN layers were synthesized...
AbstractCoherently grown nanolayered TiN/CrN thin films exhibit a superlattice effect in fracture to...
Coherently grown nanolayered thin films are generally known for their superior mechanical properties...
Transition metal nitrides are well known and applied as protective coating materials based on their ...
TiN/CrN multilayered PVD coatings are known to exhibit outstanding micromechanical properties and we...
Multilayer superlattice coatings of TiN/CrN were deposited on silicon substrates using a reactive d....
In a plot to improve the performance of steel mechanical parts subject to aggressive friction solici...
In this study, systematic nanomechanical andmicromechanical studies have been conducted in threemult...
Superlattice structures enable the simultaneous enhancement in hardness (H) and fracture toughness (...
Physical or chemical vapor deposited nanocomposite thin films evoke much scientific interest due to ...
International audienceA hard TiN/CrN multilayered coating, consisting of alternating nanometer scale...
Transition metal nitride coatings exhibit high hardness, but typically lack ductility and are theref...
TiN/(Ti,Al)N multilayer coatings prepared by physical vapour deposition onto steel Substrates were S...
Nanolayered TiN/CrN multilayer coatings were deposited on silicon substrates using a reactive DC mag...
TiN multilayers that alternate with either titanium (ductile) or nanocomposite TiSiN (hard) interlay...
Functionally graded, multilayer coatings consisting of alternating TiN/TiSiN layers were synthesized...
AbstractCoherently grown nanolayered TiN/CrN thin films exhibit a superlattice effect in fracture to...
Coherently grown nanolayered thin films are generally known for their superior mechanical properties...
Transition metal nitrides are well known and applied as protective coating materials based on their ...
TiN/CrN multilayered PVD coatings are known to exhibit outstanding micromechanical properties and we...
Multilayer superlattice coatings of TiN/CrN were deposited on silicon substrates using a reactive d....
In a plot to improve the performance of steel mechanical parts subject to aggressive friction solici...
In this study, systematic nanomechanical andmicromechanical studies have been conducted in threemult...
Superlattice structures enable the simultaneous enhancement in hardness (H) and fracture toughness (...
Physical or chemical vapor deposited nanocomposite thin films evoke much scientific interest due to ...
International audienceA hard TiN/CrN multilayered coating, consisting of alternating nanometer scale...
Transition metal nitride coatings exhibit high hardness, but typically lack ductility and are theref...
TiN/(Ti,Al)N multilayer coatings prepared by physical vapour deposition onto steel Substrates were S...
Nanolayered TiN/CrN multilayer coatings were deposited on silicon substrates using a reactive DC mag...
TiN multilayers that alternate with either titanium (ductile) or nanocomposite TiSiN (hard) interlay...
Functionally graded, multilayer coatings consisting of alternating TiN/TiSiN layers were synthesized...