Keyphrases
Chemical Vapor Infiltration
75%
Ultra-high-temperature Ceramic Matrix Composites
66%
Elevated Temperature Strength
50%
Structural Properties
50%
Bending Strength
50%
Radiofrequency-assisted
50%
Ceramic Matrix Composites
50%
Ultra-high Temperature Ceramics
50%
Tensile Test
50%
ZrB2
50%
CVI Process
33%
Infiltration Process
33%
Porosity
33%
Optimized Shape
25%
Polymer Infiltration
25%
Polymer Pyrolysis
25%
Microstructure Properties
25%
Mechanical Properties
25%
Microstructural Characteristics
25%
UHTCMC
25%
Porous Properties
25%
Elevated Temperature
25%
Fiber Properties
25%
Residual Thermal Stress
25%
Stiffness
25%
Slurry Infiltration
25%
Slurry Sintering
25%
Flexural Test
25%
Horizon 2020
25%
Radio Frequency
25%
Mechanical Behavior
25%
ZrB2 Powder
16%
RF Heating
16%
Solvent Removal
16%
Temperature Profile
16%
Densification
16%
Pyrolytic Carbon
16%
Forced Flow
16%
Flow Gradient
16%
Processing Time
16%
Interfacial Bonding
16%
Fiber Volume Fraction
16%
Carbon Fiber Preform
16%
Ablative
16%
Chamber Pressure
16%
Thermo
16%
Zirconium Diboride
16%
Pressure Gradient
16%
Theoretical Density
16%
Slurry
16%
Inverse Temperature
16%
High Mechanical Strength
16%
Fiber Orientation
16%
Material Science
Ceramic Matrix Composites
100%
Critical Micelle Concentration
50%
Ultimate Tensile Strength
50%
Structural Property
50%
Flexural Strength
50%
Composite Material
41%
Sintering
25%
Tensile Testing
25%
Thermal Stress
25%
Zirconium Diboride
16%
Carbon Fiber
16%
Fiber Reinforced Material
16%
Density
16%
Volume Fraction
16%