Engineering
Thin Films
100%
Thermal Conductivity
100%
Ablation Threshold
100%
Ablation Temperature
100%
Thermal Gradient
40%
Methane
20%
Flow Rate
20%
Room Temperature
20%
Leading Edge
20%
Material Response
20%
Pulsed Laser Ablation
20%
Hypersonic Vehicle
20%
Keyphrases
Ablation Threshold
100%
Temperature-dependent Thermal Conductivity
100%
High-entropy Carbide
100%
Thermal Conductivity
40%
Carbon Content
20%
Room Temperature
10%
Mechanical Properties
10%
Temperature Effect
10%
High Temperature
10%
Temperature Gradient
10%
Thermal Properties
10%
Material Response
10%
Thermal Gradient
10%
Conductivity Increase
10%
Metal Carbides
10%
Thermal Shock
10%
Extreme Temperature
10%
Single Metal
10%
Ultra-high Temperature Ceramics
10%
Hypersonic Vehicle
10%
Pulsed Laser Ablation
10%
Refractory Carbide
10%
Material Solutions
10%
Thermal Shock Resistance
10%
Material Science
Thin Films
100%
Thermal Conductivity
100%
Carbide
100%
Laser Ablation
9%
Film
9%
Thermal Property
9%
Thermal Shock
9%
Metal Carbide
9%
Novel Material
9%
Thermal Shock Resistance
9%