Skip to main navigation
Skip to search
Skip to main content
Sort by
Keyphrases
Hydrogenated
100%
Diamond-like
100%
Carbon Coating
100%
Tribological Performance
100%
Tetrahedral Amorphous Carbon Film
100%
Hydrogen-free
100%
Friction Performance
37%
Hydrogen Content
37%
Friction Coefficient
25%
Wear Resistance
25%
Low Friction
25%
Carbon Film
25%
Film Coating
25%
Graphite Formation
25%
Microstructure
12%
Aluminum Oxide
12%
Arc Technique
12%
Drying Conditions
12%
RF Plasma
12%
Group-based
12%
Sliding Velocity
12%
Friction Properties
12%
Pin-on-disc Test
12%
Coating Type
12%
High Friction
12%
Free Carbon
12%
H-free
12%
Plasma-enhanced Chemical Vapor Deposition (PECVD)
12%
Wear Properties
12%
Pulsed Vacuum Arc
12%
Standard Atmosphere
12%
Amorphous Hydrogenated Carbon Films
12%
Graphitization
12%
Loading Velocity
12%
Deposition Methods
12%
Micro-Raman Study
12%
High-temperature Wear Resistance
12%
Major Group
12%
INIS
performance
100%
hydrogenation
100%
diamonds
100%
coatings
100%
carbon
100%
hydrogen
100%
films
100%
friction
26%
wear resistance
15%
friction factor
10%
wear
10%
atmospheres
10%
graphite
10%
comparative evaluations
5%
plasma
5%
microstructure
5%
range
5%
aluminium oxides
5%
deposition
5%
velocity
5%
steels
5%
graphitization
5%
Material Science
Diamond-Like Carbon Coating
100%
Carbon Films
100%
Tribological Performance
100%
Hydrogen
100%
Tetrahedral Amorphous Carbon
88%
Film
88%
Wear Resistance
33%
Diamond Like Carbon Films
22%
Protective Atmosphere
22%
Carbon-Based Coating
11%
Plasma Deposition
11%
Wear Property
11%
Amorphous Hydrogenated Carbon
11%
Aluminum Oxide
11%
Coefficient of Friction
11%