The tribological response of multilayer micro/nanocrystalline diamond coatings grown by the hot filament CVD technique is investigated. These multigrade systems were tailored to comprise a starting microcrystalline diamond (MCD) layer with high adhesion to a silicon nitride (Si3N4) ceramic substrate, and a top nanocrystalline diamond (NCD) layer with reduced surface roughness. Tribological tests were carried out with a reciprocating sliding configuration without lubrication. Such composite coatings exhibit a superior critical load before delamination (130–200 N), when compared to the mono- (60–100 N) and bilayer coatings (110 N), considering ∼10 µm thick films. Regarding the friction behaviour, a short-lived initial high friction coefficien...
Cr/CrN bi-layers have been used recently to promote the growth of high quality Hot Filament Chemical...
Chemical vapour deposited (CVD) diamond coatings are important for tribological applications due to ...
The tribological behavior of tenfold micro/nanocrystalline CVD diamond multilayers is here investiga...
The tribological response of multilayer micro/nanocrystalline diamond coatings grown by the hot fila...
The tribological response of multilayer micro/nanocrystalline diamond coatings grown by the hot fila...
A comparison has been documented between nanocrystalline diamond (NCD) and microcrystalline diamond ...
Silicon nitride (Si3N4) ceramics were selected as substrates due to their thermal and chemical compa...
Nanocrystalline diamond (NCD) coatings offer an excellent alternative for tribological applications,...
Due to their much lower surface roughness compared to that of microcrystalline diamond, nanocrystall...
Friction and wear behaviour of self-mated chemical vapour deposited (CVD) diamond films coating silic...
Cr/CrN bi-layers have been used recently to promote the growth of high quality Hot Filament Chemical...
Cr/CrN bi-layers have been used recently to promote the growth of high quality Hot Filament Chemical...
Nano-crystalline diamond and microcrystalline diamond films have been separately deposited on chemic...
Cr/CrN bi-layers have been used recently to promote the growth of high quality Hot Filament Chemical...
Cr/CrN bi-layers have been used recently to promote the growth of high quality Hot Filament Chemical...
Cr/CrN bi-layers have been used recently to promote the growth of high quality Hot Filament Chemical...
Chemical vapour deposited (CVD) diamond coatings are important for tribological applications due to ...
The tribological behavior of tenfold micro/nanocrystalline CVD diamond multilayers is here investiga...
The tribological response of multilayer micro/nanocrystalline diamond coatings grown by the hot fila...
The tribological response of multilayer micro/nanocrystalline diamond coatings grown by the hot fila...
A comparison has been documented between nanocrystalline diamond (NCD) and microcrystalline diamond ...
Silicon nitride (Si3N4) ceramics were selected as substrates due to their thermal and chemical compa...
Nanocrystalline diamond (NCD) coatings offer an excellent alternative for tribological applications,...
Due to their much lower surface roughness compared to that of microcrystalline diamond, nanocrystall...
Friction and wear behaviour of self-mated chemical vapour deposited (CVD) diamond films coating silic...
Cr/CrN bi-layers have been used recently to promote the growth of high quality Hot Filament Chemical...
Cr/CrN bi-layers have been used recently to promote the growth of high quality Hot Filament Chemical...
Nano-crystalline diamond and microcrystalline diamond films have been separately deposited on chemic...
Cr/CrN bi-layers have been used recently to promote the growth of high quality Hot Filament Chemical...
Cr/CrN bi-layers have been used recently to promote the growth of high quality Hot Filament Chemical...
Cr/CrN bi-layers have been used recently to promote the growth of high quality Hot Filament Chemical...
Chemical vapour deposited (CVD) diamond coatings are important for tribological applications due to ...
The tribological behavior of tenfold micro/nanocrystalline CVD diamond multilayers is here investiga...