The lifetimes and the premature wear of machining tools impact on manufacturing efficiencies and productivities. A significant proportion of machining tool damage can be attributed to component wear. Here, titanium aluminium nitride (TiAlN) multi-layered with titanium diboride (TiB2) prepared by PVD (Physical Vapour Deposition) sputtering onto H-13 substrates are studied as potential wear-resistant coatings for forging die applications. The TiB2 content has been altered and two-sets of coating systems with a bilayer thickness either less than or greater than 1 μm are investigated by tribological and microstructural analysis. XRD analysis of the multilayers reveals the coatings to be predominately dominated by the TiAlN (200) peak, with addi...
TiAlN is a very popular coating for high-speed cutting manufacturing processes. Nevertheless, it is ...
TiB2 coating comprises a large number of ionic and covalent bonds, conferring it with excellent prop...
Titanium nitride coatings, because of their high hardness, resistance to corrosion and wear and gold...
The lifetimes and the premature wear of machining tools impact on manufacturing efficiencies and pro...
The wear of components while they are in service is a predominant factor controlling the life of mac...
There is a growing interest for thin film coatings for dry machining technologies which display both...
TiN and TiAlN thin hard coatings have been widely applied on machine components and cutting tools to...
This research focusses on tribological analysis of Titanium Aluminum Nitride (TiAlN) coatings deposi...
Both titanium nitride (TiN) and titanium aluminum nitride (TiAlN) have shown great wear resistance p...
Nano-multilayer architecture based on physical vapor deposition is a promising way to tailor the str...
Ti-B-N coatings consist of a mixture of single and binary phases depending on the relative concentra...
TiN and TiAlN monolayer as well as TiN/AlTiN multilayer were deposited by d.c. reactive magnetron sp...
Hard coatings like titanium nitride (TiN) normally contain a high degree of internal stress (usually...
International audienceMicrotribology experiments were carried out on a set of protective nanostructu...
Binary nitrides (TiN and CrN) and ternary nitrides (TiAlN and CrAlN) have become excellent coatings ...
TiAlN is a very popular coating for high-speed cutting manufacturing processes. Nevertheless, it is ...
TiB2 coating comprises a large number of ionic and covalent bonds, conferring it with excellent prop...
Titanium nitride coatings, because of their high hardness, resistance to corrosion and wear and gold...
The lifetimes and the premature wear of machining tools impact on manufacturing efficiencies and pro...
The wear of components while they are in service is a predominant factor controlling the life of mac...
There is a growing interest for thin film coatings for dry machining technologies which display both...
TiN and TiAlN thin hard coatings have been widely applied on machine components and cutting tools to...
This research focusses on tribological analysis of Titanium Aluminum Nitride (TiAlN) coatings deposi...
Both titanium nitride (TiN) and titanium aluminum nitride (TiAlN) have shown great wear resistance p...
Nano-multilayer architecture based on physical vapor deposition is a promising way to tailor the str...
Ti-B-N coatings consist of a mixture of single and binary phases depending on the relative concentra...
TiN and TiAlN monolayer as well as TiN/AlTiN multilayer were deposited by d.c. reactive magnetron sp...
Hard coatings like titanium nitride (TiN) normally contain a high degree of internal stress (usually...
International audienceMicrotribology experiments were carried out on a set of protective nanostructu...
Binary nitrides (TiN and CrN) and ternary nitrides (TiAlN and CrAlN) have become excellent coatings ...
TiAlN is a very popular coating for high-speed cutting manufacturing processes. Nevertheless, it is ...
TiB2 coating comprises a large number of ionic and covalent bonds, conferring it with excellent prop...
Titanium nitride coatings, because of their high hardness, resistance to corrosion and wear and gold...