Keyphrases
Kinetic Parameters
100%
Mixed Conduction
100%
Conduction Model
100%
Stainless Steel
100%
Inner Layer
100%
Transport Parameters
100%
High-temperature Electrolyte
100%
Oxide Film
40%
Film Growth
40%
Electrolyte
40%
X-ray Photoelectron Spectroscopy
20%
Oxides
20%
Reactor
20%
Temperature Effect
20%
Concentration Profile
20%
Compact Layer
20%
Model Prediction
20%
Interfacial Transport
20%
Interfacial Reaction
20%
Corrosion Mechanism
20%
AISI 304 Steel
20%
Growth Rate
20%
Diffusion Process
20%
Compositional Data
20%
Ex-situ Analysis
20%
Crystallites
20%
Determination of Kinetic Parameters
20%
Fitting Method
20%
Auger Electron Spectroscopy
20%
Pressurized Water
20%
Depth Distribution
20%
Anodic Film
20%
Migration Mechanism
20%
Pore Filling
20%
Corrosion Film
20%
Bilayer Oxide
20%
Homogeneous Diffusion
20%
Zinc Addition
20%
INIS
layers
100%
stainless steels
100%
kinetics
100%
high temperature
100%
electrolytes
100%
transport
85%
growth
71%
films
71%
oxides
42%
data
28%
water
28%
corrosion
28%
diffusion
28%
alloys
28%
values
14%
simulation
14%
comparative evaluations
14%
x-ray photoelectron spectroscopy
14%
concentration
14%
compacts
14%
migration
14%
reactors
14%
prediction
14%
steels
14%
auger electron spectroscopy
14%
stainless steel-304
14%
depth distribution
14%
zinc additions
14%
Engineering
Outer Layer
100%
Oxide Film
100%
Stainless Steel
100%
Kinetic Parameter
100%
Corrosion Mechanism
50%
Light Water Reactors
50%
Model Prediction
50%
Compact Layer
50%
Ray Photoelectron Spectroscopy
50%
Diffusion Process
50%
Fitting Procedure
50%
304 Stainless Steel
50%
Concentration Profile
50%
Crystallite
50%
Material Science
Stainless Steel
100%
Film Growth
100%
Corrosion
100%
Oxide Film
100%
Anodic Film
50%
Auger Electron Spectroscopy
50%
Film
50%
X-Ray Photoelectron Spectroscopy
50%
Oxide Compound
50%
304 Stainless Steel
50%
Crystallite
50%