Engineering
Spent Nuclear Fuel
100%
Rod
72%
Burnup
62%
Fuel Rod
48%
Destructive Examination
43%
Radioactive Aerosol
33%
Spent Fuels
31%
Internal Pressure
24%
Fatigue Testing
21%
Stress Corrosion Crack
21%
Cascade Impactor
19%
Oak Ridge
18%
Metallographic Examination
14%
Experimental Investigation
14%
Mechanical Fatigue Test
14%
Nuclear Fuel
14%
Microchannel
14%
Crack Path
14%
Progress Report
14%
Fracture Initiation
14%
Failed Specimen
14%
Fatigue Performance
14%
Pressurized Water Reactor
14%
Numerical Model
10%
Graphical User Interface
10%
Nuclear Energy
10%
Department of Energy
10%
Mass Distribution
9%
Circumferential
9%
Leaching
9%
Inside Diameter
9%
Failure Initiation
9%
Platelet
9%
Fuel Assembly
9%
Aerodynamic Diameter
9%
Pressure Drop
9%
Fatigue Behavior
7%
Yield Point
7%
Imposed Strain
7%
Cyclic Loads
7%
Plugging-In
7%
Numerical Solution
7%
Stress Corrosion Cracking
7%
Stainless Steel
7%
Storage System
7%
Model Prediction
7%
Material Science
Nuclear Fuel
48%
Surface (Surface Science)
28%
Actinide
18%
Zircaloy
18%
Density
16%
Hydride
16%
Oxidation Reaction
14%
Uranium Dioxide
14%
Inductively Coupled Plasma Mass Spectrometry
14%
Uranium
14%
Leaching
14%
Grain Boundary
14%
Stress Corrosion Cracking
14%
Cyclic Loads
7%
Fatigue Behavior
7%