Skip to main navigation
Skip to search
Skip to main content
Sort by
Keyphrases
Oxide Film
100%
Environmentally Assisted Cracking
100%
Anionic Impurities
100%
Crack Tip Chemistry
100%
Crack Growth
60%
Boiling Water Reactor
40%
Coolant
40%
Nuclear Power Plant
20%
Electrochemical Performance
20%
Adsorption
20%
Anions
20%
Stress Corrosion Cracking
20%
Crack Initiation
20%
Nickel-based Alloy
20%
Change in pH
20%
Electrochemical Techniques
20%
Reactor Coolant
20%
Structural Materials
20%
Reactor Type
20%
Microscopic Techniques
20%
Compositional Properties
20%
Trace Amount
20%
High Temperature Condition
20%
Chemical Parameters
20%
Analytical Results
20%
Compositional Structure
20%
Iron Alloys
20%
Ni-rich Materials
20%
Electrochemical Parameters
20%
Fe-based Materials
20%
Normal Water Chemistry
20%
Level of Understanding
20%
Wall Surfaces
20%
Electron Microscopic
20%
INIS
oxides
100%
chemistry
100%
impurities
100%
cracking
100%
films
100%
cracks
100%
electrochemistry
33%
walls
33%
crack growth
33%
coolants
33%
ph value
22%
bwr type reactors
22%
comparative evaluations
11%
levels
11%
surfaces
11%
correlations
11%
electrons
11%
iron
11%
high temperature
11%
stress corrosion
11%
nuclear power plants
11%
prediction
11%
water chemistry
11%
adsorption
11%
anions
11%
crack propagation
11%
nickel base alloys
11%
structural materials
11%
trace amounts
11%
Engineering
Oxide Film
100%
Crack Tip
100%
Crack Wall
60%
Boiling Water Reactor
40%
Crack Growth Rate
40%
Nuclear Power Plant
20%
Electrochemical Technique
20%
Temperature Condition
20%
Stress Corrosion Crack
20%
Structural Materials
20%
Crack Initiation
20%
Crack Growth
20%
Chemical Parameter
20%
Water Chemistry
20%
Iron
20%
Material Science
Oxide Film
100%
Crack Tip
100%
Crack Growth
60%
Coolant
60%
Building Material
20%
Structure (Composition)
20%
Electrochemical Reaction
20%
Crack Initiation
20%
Film
20%
Surface (Surface Science)
20%
Stress Corrosion Cracking
20%
Nickel Alloy
20%