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William Cureton

Will F Cureton

R&D Staff Member

Contact

865.341.2501 | CURETONWF@ORNL.GOV

All Publications

A machine learning approach to quantify degradation of nuclear fuels and the effects of fission products
Neutron Total Scattering Analysis of Materials for the Nuclear Fuel Cycle
Oxygen Defect Configurations in Single-Phase UO2.15
Raman spectroscopy of uranium nitride kernels
Optical functions of uniaxial rutile and anatase (TiO2) revisited
Low-Pressure and Fluidized-Bed Chemical Vapor Deposition of PyC and ZrC for Space Nuclear Propulsion
Swift heavy ion irradiation effects in zirconium and hafnium carbides
Quality Control Methods for Measurement of UCO Kernel Composition and SiC Microstructure
Response of ZrC to swift heavy ion irradiation
Structure–property relations in graphitic pebbles for nuclear applications
Design of a MiniFuel Irradiation Experiment to Study Fuel Performance Phenomena in Ceramic Fuels
Chemical vapor deposition of ZrC coatings for Space Nuclear Propulsion
Grain size dependence of thermally induced oxidation in zirconium carbide
Structural stability of REE-PO4 (REE = Sm,Tb) under swift heavy ion irradiation
SAFETY TESTING OF AGR-5/6/7 COMPACTS 2-2-2 AND 2-2-4
UPGRADE OF CORE CONDUCTION COOLDOWN TEST FACILITY CONTROL SYSTEM...

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Organizations

Fusion and Fission Energy and Science Directorate
Nuclear Energy and Fuel Cycle Division
Nuclear Fuel Development Section
Particle Fuel Forms Group

Related News

News

Neutron scattering reveals hard-to-detect chemistry inside novel reactor fuels
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