This study describes the performance of nanoscale multilayer TiN/NbN coatings deposited on CoCrMo medical-grade alloys by utilising novel mixed high power impulse magnetron sputtering (HIPIMS) and direct current unbalanced magnetron sputtering (UBM) technique in an industrial size vacuum coater. Scanning electron microscopy analysis showed that these coatings were extremely dense without any intercolumnar voids. The coating exhibited high hardness of 28 GPa, as well as low friction and wear coefficient of 0.7 and 1.4 × 10−14 m3·N−1·m−1, respectively, as compared to the bare material. Scratch tests revealed superior coating to substrate adhesion due to the HIPIMS etching prior to coating deposition. Energy-dispersive X-ray analysis of the we...
Titanium nitride coatings (TiN) deposited by the promising technique high power impulse magnetron sp...
In the current work, 4 µm thick CrN/NbN coating utilising nanoscale multilayer structure with bi-lay...
The demand for improvement of lifetime and biocompatibility of medical implants is ever growing. The...
This study describes the performance of nanoscale multilayer TiN/NbN coatings deposited on CoCrMo me...
In recent years significant progress has been made in the application of various ceramic, namely MeN...
Nanoscale CrN/NbN multilayer PVD coatings have exhibited resistance to erosion-corrosion. However gr...
Nanoscale multilayer CrN/NbN physical vapor deposition (PVD) coatings are gaining reputation for the...
Nanoscale CrN/NbN multilayer PVD coatings have exhibited resistance to erosion-corrosion. However, g...
The demand for reliable coating on medical implants is ever growing. In this research, enhanced perf...
Nanoscale CrN/NbN multilayer PVD coatings have exhibited resistance to erosion-corrosion. However, g...
The aim of this study was to develop thin film coatings for total knee replacement joints using high...
Nanoscale CrN/NbN multilayer PVD coatings have exhibited resistance to erosion–corrosion. However gr...
We have deposited nanolayered multilayer coatings of TiN/NbN on silicon and tool steel substrates us...
In physical vapour deposition the ion etching pre-treatment prior to thin film deposition strongly i...
It has been reported that compared to state-of-the-art technologies, High Power Impulse Magnetron Sp...
Titanium nitride coatings (TiN) deposited by the promising technique high power impulse magnetron sp...
In the current work, 4 µm thick CrN/NbN coating utilising nanoscale multilayer structure with bi-lay...
The demand for improvement of lifetime and biocompatibility of medical implants is ever growing. The...
This study describes the performance of nanoscale multilayer TiN/NbN coatings deposited on CoCrMo me...
In recent years significant progress has been made in the application of various ceramic, namely MeN...
Nanoscale CrN/NbN multilayer PVD coatings have exhibited resistance to erosion-corrosion. However gr...
Nanoscale multilayer CrN/NbN physical vapor deposition (PVD) coatings are gaining reputation for the...
Nanoscale CrN/NbN multilayer PVD coatings have exhibited resistance to erosion-corrosion. However, g...
The demand for reliable coating on medical implants is ever growing. In this research, enhanced perf...
Nanoscale CrN/NbN multilayer PVD coatings have exhibited resistance to erosion-corrosion. However, g...
The aim of this study was to develop thin film coatings for total knee replacement joints using high...
Nanoscale CrN/NbN multilayer PVD coatings have exhibited resistance to erosion–corrosion. However gr...
We have deposited nanolayered multilayer coatings of TiN/NbN on silicon and tool steel substrates us...
In physical vapour deposition the ion etching pre-treatment prior to thin film deposition strongly i...
It has been reported that compared to state-of-the-art technologies, High Power Impulse Magnetron Sp...
Titanium nitride coatings (TiN) deposited by the promising technique high power impulse magnetron sp...
In the current work, 4 µm thick CrN/NbN coating utilising nanoscale multilayer structure with bi-lay...
The demand for improvement of lifetime and biocompatibility of medical implants is ever growing. The...