Engineering
High Cycle Fatigue
100%
Composite Material
100%
Level Set Method
100%
Delamination
100%
Cohesive Zone
100%
Crack Front
66%
Delamination Growth
66%
Energy Release Rate
33%
Level Set
33%
Cohesive Zone Method
33%
Benchmark
33%
Fatigue Loading
33%
Performance
33%
Virtual Crack-Closure Technique
33%
Material Interface
33%
Fields
33%
Crack Growth
33%
Damage Variable
33%
INIS
zones
100%
composite materials
100%
levels
100%
simulation
100%
fatigue
100%
growth
60%
cracks
40%
benchmarks
20%
energy
20%
damage
20%
crack growth
20%
interfaces
20%
crack propagation
20%
performance
20%
loading
20%
Material Science
Delamination
100%
Composite Material
100%
High-Cycle Fatigue
100%
Crack
50%
Crack Growth
25%
Crack Closure
25%
Interface (Material)
25%
Keyphrases
Fatigue Delamination
100%
Delamination Growth
66%
Bimaterial Interface
33%
Virtual Crack Closure Technique
33%
Fatigue Growth
33%
Non-similar
33%
Cohesive Zone Method
33%
Damage Variable
33%