INIS
thermal effects
100%
matrices
100%
correlations
100%
carbon fibers
100%
shear strength
100%
performance
100%
sulfides
100%
increasing
66%
failures
66%
fibers
66%
welds
33%
reduction
33%
ductility
33%
glass
33%
comparative evaluations
33%
transition temperature
33%
shear
33%
fractures
33%
Engineering
Poly-Phenylene Sulphide
100%
Joints (Structural Components)
100%
Crystallinity
100%
Performance
100%
Fiber
100%
Correlation
100%
Thermal Effect
100%
Lap Shear Strength
75%
Increasing Temperature
50%
Temperature
50%
Failure Mechanism
50%
Transition Temperature
25%
High Temperature
25%
High Degree
25%
Single-Lap Shear Test
25%
Debonding
25%
Fracture
25%
Shear Failure
25%
Reduction
25%
Welds
25%
Keyphrases
Weld Line
100%
Degree of Crystallinity
100%
Carbon Fiber Reinforced
100%
Thermal Effect
100%
Polyphenylene Sulfide
100%
Lap Shear Strength
60%
Increased Temperature
40%
Failure Mechanism
40%
Shear Failure
20%
High Temperature
20%
Fracture-matrix System
20%
Semi-crystalline
20%
Fractographic Analysis
20%
High Toughness
20%
Fiber Matrix
20%
Strength Mechanism
20%
Temperature Effect
20%
High-performance Fibers
20%
Interfacial Strength
20%
Overall Trends
20%
Single-lap Shear Test
20%
Welding Performance
20%
High Ductility
20%
Shear Strength Reduction
20%
Fiber-matrix Debonding
20%
Glass Transition Temperature
20%
Material Science
Temperature
100%
Carbon Fiber
100%
Polyphenylene
100%
Amorphous Material
80%
Shear Strength
60%
Fiber
40%
Mechanical Strength
20%
Shear Testing
20%
Debonding
20%
Ductility
20%
Glass Transition Temperature
20%
Toughness
20%
Crystalline Material
20%