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Keyphrases
Tribofilm Formation
100%
Carbon Coating
100%
Tribological Performance
100%
Wear Surface
100%
Hydrogenated Carbon
100%
Sliding Velocity
57%
Aluminum Oxide
42%
Tribolayer
42%
Load-velocity Profile
42%
Increasing Load
28%
Pin Material
28%
Coating Wear
28%
Stainless Steel Substrate
14%
Oxides
14%
Low Shear
14%
Secondary Ion Mass Spectrometry
14%
Friction Behavior
14%
Friction Coefficient
14%
Contact Area
14%
RF Plasma
14%
Wear Performance
14%
Friction Performance
14%
Shear Strength
14%
High Mass Loading
14%
Pin-on-disc
14%
Low Friction
14%
Tribolayer Formation
14%
Carbon Species
14%
Auger Electron Spectroscopy
14%
Amorphous Hydrogenated Carbon
14%
Plasma Technique
14%
INIS
performance
100%
hydrogenation
100%
coatings
100%
carbon
100%
wear
100%
surfaces
63%
velocity
36%
aluminium oxides
27%
steels
27%
friction
18%
increasing
18%
films
18%
friction factor
9%
stainless steels
9%
plasma
9%
substrates
9%
oxides
9%
range
9%
ions
9%
deposits
9%
mass spectroscopy
9%
auger electron spectroscopy
9%
shear strength
9%
Material Science
Surface Fatigue
100%
Tribological Performance
100%
Aluminum Oxide
42%
Film
28%
Contact Area
14%
Amorphous Hydrogenated Carbon
14%
Auger Electron Spectroscopy
14%
Stainless Steel
14%
Shear Strength
14%
Secondary Ion Mass Spectrometry
14%
Oxide Compound
14%
Coefficient of Friction
14%