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Keyphrases
Finite Element Modeling
100%
Austenitic Stainless Steel
100%
Grain Boundary
100%
Transmission Electron Microscopy Observation
100%
Free Surface Boundary
100%
Channel Deformations
100%
Critical Resolved Shear Stress
100%
Surface Slip
100%
Channel Aspect Ratio
50%
Atomic Force Microscopy
25%
Yield Stress
25%
Analytical Formula
25%
Aspect Ratio
25%
Damage Mechanism
25%
Finite Element Method
25%
Surface Grain
25%
Stress Concentration
25%
Free Surface
25%
Prediction Method
25%
Physically Based Model
25%
Neutron Dose
25%
Finite Element Mesh
25%
Low Stress Level
25%
Constraint Effect
25%
IASCC
25%
Boundary Stress
25%
Surface Channel
25%
Grain Boundary Slip
25%
Dislocation Channel
25%
Slip Boundary
25%
Bulk Channel
25%
Experimental Data-based Model
25%
Hard Matrix
25%
INIS
surfaces
100%
interactions
100%
deformation
100%
grain boundaries
100%
modeling
100%
transmission electron microscopy
100%
finite element method
100%
irradiation
100%
austenitic steels
100%
slip
85%
shear
57%
aspect ratio
42%
matrices
42%
doses
28%
comparative evaluations
14%
levels
14%
thickness
14%
design
14%
atomic force microscopy
14%
concentration
14%
kinetics
14%
experimental data
14%
length
14%
constraints
14%
pressure range mega pa
14%
damage
14%
saturation
14%
prediction
14%
yields
14%
hardening
14%
neutrons
14%
dislocations
14%
dpa
14%
Engineering
Free Surface
100%
Austenitic Stainless Steel
100%
Fem Model
100%
Critical Resolved Shear Stress
100%
Slip Surface
75%
Aspect Ratio
75%
Model Parameter
25%
Damage Mechanism
25%
Stress Level
25%
Finite Element Mesh
25%
Applied Stress
25%
Stress Concentration
25%
Atomic Force Microscopy
25%
Constraint Effect
25%
Yield Point
25%
Finite Element Analysis
25%
Induced Surface
25%