Keyphrases
Adhesion
33%
AISI 52100
33%
AISI M50
33%
Aluminum Nitride Coating
33%
Aluminum Oxide
33%
Arc-discharge Method
100%
Carbon Coating
33%
Carbon Film
100%
Coated Substrate
33%
Coating Characterization
33%
Counterface Materials
33%
Diamond-like
100%
Electromagnetic Coil
33%
Film Composition
33%
Friction Coefficient
66%
Hard Carbon Film
100%
Hardened Steel
33%
High-speed Steel Substrate
33%
Humidity
33%
Pin-on-disc Test
33%
Plasma Plume
33%
Pulsed Vacuum Arc
100%
Rutherford Backscattering Spectrometry
33%
Sliding Velocity
33%
TiAlN
33%
Titanium Coating
33%
Titanium Nitride
33%
Tribological Characterization
100%
Tribological Properties
33%
Vacuum Discharge
100%
Wear Resistance
33%
Wear Surface
33%
Wear-resistant
33%
INIS
adhesion
16%
air
16%
aluminium nitrides
16%
aluminium oxides
16%
carbon
100%
coatings
83%
diamonds
50%
films
100%
friction
16%
friction factor
16%
humidity
16%
hydrogen
16%
measured values
16%
oxygen
16%
plasma
16%
plumes
16%
range
33%
recoils
16%
rutherford backscattering spectroscopy
16%
silicon
16%
spectroscopy
16%
speed
33%
steels
33%
substrates
66%
surfaces
16%
titanium
33%
titanium nitrides
16%
wear
16%
wear resistance
33%
Engineering
Aluminum Oxide
33%
Coefficient of Friction
66%
Counterface
33%
Diamond-Like Carbon
100%
Electromagnetic Coil
33%
Hard Carbon
100%
Hardened Steel
33%
High-Speed Steel
33%
Nitride
66%
Pin-on-Disc
33%
Plasma Plume
33%
Relative Humidity
33%
Sliding Speed
33%
Surface Fatigue
33%
Test Result
33%
Wear Resistance
33%
Material Science
Aluminum Nitride
33%
Aluminum Oxide
33%
Carbon Films
100%
Coefficient of Friction
33%
Diamond Like Carbon Films
66%
Diamond-Like Carbon Coating
33%
Film
66%
Hardened Steel
33%
High Speed Steel
33%
Nitride Compound
33%
Silicon
33%
Surface Fatigue
33%
Titanium
100%
Wear Resistance
33%