Keyphrases
Epoxy
100%
Aerospace Applications
100%
Toughness Improvement
100%
Rosin
100%
Epoxy Matrix Composites
100%
Interlaminar Fracture Toughness
66%
Compression after Impact
66%
Fracture Compression
66%
Mechanical Testing
33%
High Temperature
33%
Resin
33%
Carbon Fiber
33%
Glass Transition Temperature
33%
Matrix Resin
33%
Mode II Fracture Toughness
33%
Carbon Fiber Composite
33%
Fiber Volume Fraction
33%
Two-component
33%
Fracture Toughness
33%
Anhydride
33%
Prepreg
33%
Damage Area
33%
Epoxy Resin
33%
Maleic Anhydride
33%
Bio-sourced Materials
33%
Impact Damage
33%
Polyamide
33%
Curing Agent
33%
Interleaf
33%
In-plane Mechanical Properties
33%
Compression after Impact Strength
33%
Residual Strength
33%
Resin Matrix Composites
33%
Composite Specimen
33%
Green's Matrix
33%
Drop Test
33%
High Glass Transition Temperature
33%
Impact Behavior
33%
Opening Mode
33%
Green Resins
33%
Engineering
Impact Toughness
100%
Aerospace Applications
100%
Epoxy Matrix
100%
Impact Strength
25%
Carbon Fibre Composite
25%
Toughening
25%
Fiber Volume Fraction
25%
Impact Damage
25%
Polyamide
25%
Damage Area
25%
Curing Agent
25%
Matrix Resin
25%
Resin Matrix
25%
Impact Test
25%
Composite Specimen
25%
Opening Mode
25%
Composite Prepregs
25%
Phenolics
25%
Impact Behavior
25%
Reliability Availability and Maintainability (Reliability Engineering)
25%
Material Science
Fracture Toughness
100%
Matrix Composite
100%
Glass Transition Temperature
50%
Carbon Fiber
50%
Mechanical Testing
25%
Impact Strength
25%
Volume Fraction
25%
Polyamide
25%
Epoxy
25%
Impact Testing
25%
Prepreg
25%
Residual Strength
25%
Resin Matrix Composites
25%