Keyphrases
Alloy 230
48%
Alloy 617
66%
Copper Alloy
51%
Crack Growth
28%
Creep
30%
Creep-fatigue
38%
Defect Clusters
23%
Dislocation Loops
43%
Elevated Temperature
53%
Fatigue Life
34%
Ferritic-martensitic Steel
37%
Flow Localization
32%
Fusion Reactor
29%
Grain Boundary
24%
Heavy Ions
26%
Helium
34%
High Temperature
70%
High-temperature Reactor
33%
Holding Time
28%
In Alloy
25%
In Situ
28%
In-situ Synchrotron
23%
Irradiation
100%
Irradiation Temperature
39%
Lattice Strain
29%
Mechanical Properties
47%
Microstructural Evolution
32%
Microstructure
53%
Nanoparticles
24%
Neutron Irradiation
31%
Neutron-irradiated
48%
ODS Steel
29%
Oxide Dispersion Strengthened Steel
27%
Oxide Dispersion Strengthening
23%
Radiation Damage
35%
Radiation Effects
39%
Radiation-induced Segregation
31%
Reactor
33%
Room Temperature
43%
SS316L
41%
Stainless Steel
21%
Structural Materials
39%
Temperature Range
27%
Tensile Properties
28%
Tensile Test
34%
Thermal Creep
22%
Transmission Electron Microscopy
34%
Uniform Elongation
22%
Void Growth
21%
Yield Strength
30%
Material Science
Aluminum Oxide
26%
Austenitic Stainless Steel
30%
Building Material
40%
Carbide
34%
Cerium Oxide
33%
Coarsening
16%
Copper Alloy
61%
Corrosion
30%
Corrosion Resistance
20%
Crack Growth
38%
Creep
83%
Crystal Defect
16%
Density
66%
Electron Backscatter Diffraction
27%
Fatigue Behavior
31%
Fatigue Crack Growth
16%
Fatigue of Materials
28%
Ferritic/Martensitic Steel
38%
Finite Element Modeling
20%
Fracture Behavior
14%
Grain Boundary
36%
Grain Size
25%
Ion Bombardment
37%
Lanthanum
16%
Microstructural Evolution
41%
Molybdenum
18%
Nanoparticle
34%
Neutron Irradiation
45%
Nickel Alloy
15%
Nucleation
41%
Oxide Compound
74%
Plastic Deformation
25%
Point Defect
26%
Radiation Damage
15%
Scanning Electron Microscopy
21%
Single Crystal
15%
Stainless Steel
58%
Surface (Surface Science)
47%
Synchrotron X-Ray Diffraction
16%
Tensile Property
27%
Thermal Creep
20%
Transmission Electron Microscopy
47%
Tritium
16%
Ultimate Tensile Strength
25%
Uranium Dioxide
15%
Void Growth
18%
Work Hardening
17%
X-Ray Diffraction
35%
Xenon
13%
Yield Stress
35%
Engineering
Austenitic Stainless Steel
15%
Crack Growth
38%
Crack Growth Behavior
18%
Crack Growth Rate
20%
Creep
96%
Critical Stress
18%
Cyclic Loading
16%
Defect Structure
16%
Dislocation Density
22%
Dislocation Loop
42%
Elevated Temperature
54%
Fast Neutron
15%
Fatigue Behavior
28%
Fatigue Crack Growth
21%
Fatigue Life
30%
Fatigue Performance
14%
Fatigue Response
15%
Fem Model
15%
Ferritic/Martensitic Steel
32%
Fracture Behavior
14%
Fusion Reactor
17%
Heat Flux
17%
High Temperature Gas Reactors
25%
Hold Time
29%
Internal Stress
20%
Iron
29%
Low-Temperature
17%
Microstructural Evolution
25%
Nanoparticle
18%
Nuclear Fuel
16%
Nuclear Reactor
15%
Oxide Dispersion Strengthened
28%
Phase Stability
16%
Plastic Deformation
20%
Ray Diffraction
47%
Room Temperature
46%
Stainless Steel
39%
Strain Hardening
20%
Strengthened Alloy
22%
Structural Materials
31%
Swelling Behavior
15%
Temperature Range
30%
Tensile Deformation
15%
Tensile Property
37%
Tensile Test
28%
Tensiles
64%
Thermal Creep
18%
Tritium
14%
Void Growth
15%
Yield Point
36%