INIS
microstructure
100%
modeling
100%
alloys
100%
zones
100%
fracture toughness
100%
forging
100%
distribution
57%
carbides
42%
fractures
42%
carbon
28%
size
28%
variations
28%
values
14%
simulation
14%
segregation
14%
mechanical properties
14%
scanning electron microscopy
14%
plastics
14%
compacts
14%
volume
14%
prediction
14%
calibration
14%
tensile properties
14%
image processing
14%
surface energy
14%
ferrite
14%
brittle-ductile transitions
14%
Keyphrases
Microstructure
100%
Fracture Toughness
100%
Heavy Forgings
100%
Brittle Fracture
57%
Alloying Elements
28%
Model Alloys
28%
Fracture Model
28%
Carbon Element
28%
High Temperature
14%
Mechanical Properties
14%
Elastoplastic
14%
Tensile Properties
14%
Reference Temperature
14%
Compact Tension Specimen
14%
Microscopic Analysis
14%
Two-source
14%
Stress Distribution
14%
Carbides
14%
Ferrite
14%
Carbide Size
14%
Brittle-ductile Transition
14%
Microstructural Evolution
14%
Toughness Scatter
14%
Scanning Electron Microscope Image
14%
Constitutive Law
14%
Effective Surface Energy
14%
Facture
14%
Bainitic Microstructure
14%
Local Approach Model
14%
Plastic Parameter
14%
Carbide Distribution
14%
Macrosegregation
14%
Nuclear Components
14%
Engineering
Fracture Strength
100%
Forging
100%
Brittle Fracture
57%
Alloying Element
28%
Simulation Result
14%
Estimated Value
14%
Reference Temperature
14%
Local Approach
14%
Image Analysis
14%
Bainitic Microstructure
14%
Tensile Property
14%
Microstructural Evolution
14%
Interfacial Energy
14%
Material Science
Fracture Toughness
100%
Forging
100%
Brittle Fracture
57%
Carbide
42%
Alloying
28%
Ductile-to-Brittle Transition
14%
Surface Energy
14%
Microstructural Evolution
14%
Scanning Electron Microscopy
14%
Tensile Property
14%
Earth and Planetary Sciences
Fracture Strength
100%
Brittle Fracture
57%
Alloying
28%
Scanning Electron Microscopy
14%
Tensile Property
14%
Image Analysis
14%
Interfacial Energy
14%