Projects
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NSUF 14-469: Intercompound Formation and Radiation Responses of Diffusion Couples
The project is aimed to understand intercompound formation and radiation...
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NSUF 14-469: Intercompound Formation and Radiation Responses of Diffusion Couples ansehen -
NSUF 14-472: Microstructure Evolution in Ion Irradiated UO2.
Understanding irradiation damage evolution in UO2 is crucial to the fleet of...
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NSUF 14-472: Microstructure Evolution in Ion Irradiated UO2. ansehen -
NSUF 14-473: Investigation of the chemical state of Ag and Pd in SiC shell of irradiated TRISO particles via XAFS
Investigation of the chemical state of Ag and Pd in SiC shell of irradiated...
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NSUF 14-473: Investigation of the chemical state of Ag and Pd in SiC shell of irradiated TRISO particles via XAFS ansehen -
NSUF 14-474: Radiation Induced Segregation (RIS) in Ni-Cr Alloys
Austenitic stainless steels and Ni-based alloys are widely used structural...
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NSUF 14-474: Radiation Induced Segregation (RIS) in Ni-Cr Alloys ansehen -
NSUF 14-481: Primary Water Stress Corrosion Cracking (PWSCC) Studies Using Multi-Dimensional Materials Characterization Technologies
Stress corrosion cracking (SCC) in high temperature water is one of the most...
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NSUF 14-481: Primary Water Stress Corrosion Cracking (PWSCC) Studies Using Multi-Dimensional Materials Characterization Technologies ansehen -
NSUF 14-482: Neutron Irradiation Effects on Microstructure Properties of Ultra-Fine Grained Steel
Effect of radiation exposure on nano and ultra-fine grain structured metals...
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NSUF 14-482: Neutron Irradiation Effects on Microstructure Properties of Ultra-Fine Grained Steel ansehen -
NSUF 14-485: Correlating mechanical properties with microstructure evolution in irradiated F/M and ODS alloys
Ferritic/martensitic (F/M) and oxide-dispersion strengthened (ODS) alloys are...
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NSUF 14-485: Correlating mechanical properties with microstructure evolution in irradiated F/M and ODS alloys ansehen -
NSUF 14-486: Irradiation-induced segregation, phase stability, and microstructure in 8-10 wt% Cr ODS alloys
Oxide-dispersion strengthened (ODS) ferritic-martensitic (F-M) alloys are...
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NSUF 14-486: Irradiation-induced segregation, phase stability, and microstructure in 8-10 wt% Cr ODS alloys ansehen -
NSUF 14-499: Atom probe tomography of intermetallic phases formed in Pu-based diffusion couples
Plutonium-uranium-zirconium (Pu-U-Zr) and plutonium-uranium-molybdenum (Pu-U-...
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NSUF 14-499: Atom probe tomography of intermetallic phases formed in Pu-based diffusion couples ansehen -
NSUF 14-501: Irradiation Effects in Oxide Nanoparticle Stability and Matrix Microstructure in ODS steel Neutron Irradiated to 3dpa at 500C
The interfaces between the ferritic steel matrix and the fine dispersion of...
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NSUF 14-501: Irradiation Effects in Oxide Nanoparticle Stability and Matrix Microstructure in ODS steel Neutron Irradiated to 3dpa at 500C ansehen -
NSUF 14-504: Characterization of as-cast microstructures in U-Pu-Zr and U-Pu-Mo alloys
Plutonium-uranium-zirconium (Pu-U-Zr) and plutonium-uranium-molybdenum (Pu-U-...
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NSUF 14-504: Characterization of as-cast microstructures in U-Pu-Zr and U-Pu-Mo alloys ansehen -
NSUF 14-505: Investigation of Cr segregation and thermal stability and hardening effects of nanoscale solute clusters and a' precipitates in irradiated Fe-Cr alloys
High chromium ferritic/martensitic (F-M) steels are one of the strong...
1 Datensatz
NSUF 14-505: Investigation of Cr segregation and thermal stability and hardening effects of nanoscale solute clusters and a' precipitates in irradiated Fe-Cr alloys ansehen -
NSUF 14-507: Atom probe tomography of high burn-up mixed oxide fuel
The researchers propose to use atom probe tomography to study the fission...
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NSUF 14-507: Atom probe tomography of high burn-up mixed oxide fuel ansehen -
NSUF 14-512: Investigation of thermal stability of nanoscale Ni-Mn-Si precipitates in highly irradiated RPV steels
Significant hardening and irradiation embrittlement of RPV steels has...
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NSUF 14-512: Investigation of thermal stability of nanoscale Ni-Mn-Si precipitates in highly irradiated RPV steels ansehen -
NSUF 14-513: Lattice structure evolution in ion irradiated UO2.
Uranium dioxide is one of the most complex oxide materials due to the...
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NSUF 14-513: Lattice structure evolution in ion irradiated UO2. ansehen -
NSUF 14-514: Effects of Minor Element Additions in AA6061 on the Microstructural Evolution of the Interaction Region between U-Mo Alloys and AA6061 Claddings
The interaction regions that develop between U-Mo alloys and Al-alloy...
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NSUF 14-514: Effects of Minor Element Additions in AA6061 on the Microstructural Evolution of the Interaction Region between U-Mo Alloys and AA6061 Claddings ansehen -
NSUF 14-515: Advanced 3D Characterization of Irradiated Zircaloy-4 Cladding
The objective of the project is to characterize an irradiated sample of...
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NSUF 14-515: Advanced 3D Characterization of Irradiated Zircaloy-4 Cladding ansehen -
NSUF 14-518: Advanced 3D Characterization of Irradiated HT9 Cladding
The objective of the project is to characterize an irradiated sample of HT9...
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NSUF 14-518: Advanced 3D Characterization of Irradiated HT9 Cladding ansehen -
NSUF 15-530: Characterization of CANDU Core Internals via Small Scale Mechanical Testing
This project intends to utilize small scale mechanical testing methods, i.e....
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NSUF 15-530: Characterization of CANDU Core Internals via Small Scale Mechanical Testing ansehen -
NSUF 15-531: Synergistic Effects of Thermal aging and Neutron Irradiation in 304L Welds
The work is planned to systemically characterize the thermally aged and...
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NSUF 15-531: Synergistic Effects of Thermal aging and Neutron Irradiation in 304L Welds ansehen