Diamond-like nanocomposite (DLN) films (a-C:H:Si:O films) are characterized by their unique structure and remarkable tribological properties to be pronounced under various environmental and surface modification conditions. In this paper, we investigated the effects of environments (humid air, water and oil lubrication, elevated temperatures) and laser surface texturing on tribological performance of DLN coatings. Femtosecond laser (wavelength 515 nm) was used for surface texturing. Comparative tests of DLN films sliding against different counterbodies (steel, Si3N4) in humid air and water demonstrated the low-friction and low-wear performance under water, in the absence of chemical interaction of water with the counterbody surface. The wear...
Silicon nitride (Si3N4) ceramics were selected as substrates due to their thermal and chemical compa...
The ability of femtosecond laser pulses to pattern coated tribological surfaces in order to improve ...
[[abstract]]Tribological properties of ultra nanocrystalline diamond (UNCD) and diamond nanorod (DNR...
Diamond-like nanocomposite (DLN) films (a-C:H:Si:O films) are characterized by their unique structur...
We report on femtosecond laser surface modification and microstructuring of diamond-like nanocomposi...
The wear and friction of diamond-like nanocomposite (DLN) film have been investigated in air with di...
Laser surface micropatterning (texturing) of hard materials and coatings is an effective technique t...
Recent work on the friction and wear properties of as-deposited fine-grain diamond, polished coarse-...
Laser micro texturing technique has shown its potential in reducing friction and wear at various mec...
Improving the tribological functionality of diamondlike carbon (DLC) films--developing, good wear re...
Regardless of environment (ultrahigh vacuum, humid air, dry nitrogen, or water), ion-beam-deposited ...
The tribological behaviour of diamond-like carbon (DLC) and graphene nanoplatelets (GNP) nanocomposi...
Diamond-like Carbon (DLC) coatings represent an interesting research subject for various groups of ...
Improving the tribological properties of materials in ambient and high vacuum tribo-conditions is us...
Contact-mode atomic force microscopy (AFM) techniques (lateral force microscopy, force-distance curv...
Silicon nitride (Si3N4) ceramics were selected as substrates due to their thermal and chemical compa...
The ability of femtosecond laser pulses to pattern coated tribological surfaces in order to improve ...
[[abstract]]Tribological properties of ultra nanocrystalline diamond (UNCD) and diamond nanorod (DNR...
Diamond-like nanocomposite (DLN) films (a-C:H:Si:O films) are characterized by their unique structur...
We report on femtosecond laser surface modification and microstructuring of diamond-like nanocomposi...
The wear and friction of diamond-like nanocomposite (DLN) film have been investigated in air with di...
Laser surface micropatterning (texturing) of hard materials and coatings is an effective technique t...
Recent work on the friction and wear properties of as-deposited fine-grain diamond, polished coarse-...
Laser micro texturing technique has shown its potential in reducing friction and wear at various mec...
Improving the tribological functionality of diamondlike carbon (DLC) films--developing, good wear re...
Regardless of environment (ultrahigh vacuum, humid air, dry nitrogen, or water), ion-beam-deposited ...
The tribological behaviour of diamond-like carbon (DLC) and graphene nanoplatelets (GNP) nanocomposi...
Diamond-like Carbon (DLC) coatings represent an interesting research subject for various groups of ...
Improving the tribological properties of materials in ambient and high vacuum tribo-conditions is us...
Contact-mode atomic force microscopy (AFM) techniques (lateral force microscopy, force-distance curv...
Silicon nitride (Si3N4) ceramics were selected as substrates due to their thermal and chemical compa...
The ability of femtosecond laser pulses to pattern coated tribological surfaces in order to improve ...
[[abstract]]Tribological properties of ultra nanocrystalline diamond (UNCD) and diamond nanorod (DNR...