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Corrosion of Composite Uranium Nitride Fuels
Thomas Braine
,
Brian J. Jaques
, Jennifer Watkins
, Darryl P. Butt
Micron School of Materials Science and Engineering
Boise State University
Research output
:
Contribution to conference
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Poster
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Keyphrases
Corrosion
100%
Uranium Mononitride
100%
Uranium Nitride Fuel
100%
UO2(II)
60%
Radioactive Material
40%
Uranium
40%
Autoclave
40%
United States
20%
Thermal Conductivity
20%
Electron Microscopy
20%
Reactor
20%
Corrosion Products
20%
Corrosion Resistance
20%
Nitrides
20%
Operating Temperature
20%
Energy Dispersive X-ray Spectroscopy
20%
Grain Boundary
20%
Optical Microscopy
20%
X-ray
20%
Thermal Low
20%
Nuclear Reactor
20%
Light Water Reactor
20%
Diffraction
20%
Change Surface
20%
Weight Change
20%
High Uranium Density
20%
Hydride-dehydride
20%
Water-filled
20%
Thermal Synthesis
20%
Accident Tolerant Fuel
20%
Reacts with Water
20%
Mass Spectroscopy
20%
Surface Grain
20%
Fission Gas Release
20%
Digital Balance
20%
Surface Hydration
20%
Material Release
20%
Inductive Coupled Plasma
20%
Material Science
Corrosion
100%
Uranium
100%
Nitride Compound
100%
Radioactive Material
22%
Electron Microscopy
11%
Corrosion Resistance
11%
Grain Boundary
11%
Density
11%
Thermal Conductivity
11%
X-Ray Diffraction
11%
Energy-Dispersive X-Ray Spectroscopy
11%
Hydride
11%
Chemical Engineering
Nitride
100%
Thermal Conductivity
50%
Chemical Element
50%