" Hydride Microstructure at the Metal-Oxide Interface of a Zircaloy-4 Fuel Clad from the H. B. Robinson Nuclear Reactor" Mahmut Cinbiz, Kurt Terrani, 2017 ANS Annual Meeting [unknown] | |
"Hydride Microstructure at the Metal-Oxide Interface of a Zircaloy-4 Fuel Clad from the H. B. Robinson Nuclear Reactor" Mahmut Cinbiz, Philip Edmondson, Kurt Terrani, American Nuclear Society June 11-15, (2017) Link | |
"Hydride Microstructure at the Metal-Oxide Interface of a Zircaloy-4 Fuel Clad from the H.B. Robinson Nuclear Reactor" Mahmut Cinbiz, Philip Edmondson, Kurt Terrani, 2017 ANS Annual Meeting June 11-15, (2017) |
U.S. DOE Nuclear Science User Facilities Awards 30 Rapid Turnaround Experiment Research Proposals - Awards total nearly $1.2 million The U.S. Department of Energy (DOE) Nuclear Science User Facilities (NSUF) has selected 30 new Rapid Turnaround Experiment (RTE) projects, totaling up to approximately $1.2 million. These projects will continue to advance the understanding of irradiation effects in nuclear fuels and materials in support of the mission of the DOE Office of Nuclear Energy. Wednesday, April 26, 2017 - Calls and Awards |
DOE Awards 33 Rapid Turnaround Experiment Research Proposals - Projects total approximately $1.5 million These projects will continue to advance the understanding of irradiation effects in nuclear fuels and materials in support of the mission of the DOE Office of Nuclear Energy. Monday, May 14, 2018 - Calls and Awards |
RTE 2nd Call Awards Announced - Projects total approximately $1.6 million These project awards went to principal investigators from 26 U.S. universities, eight national laboratories, two British universities, and one Canadian laboratory. Tuesday, May 14, 2019 - Calls and Awards |
This NSUF Profile is 75
Presented an NSUF-supported publication
Top 5% of all RTE Proposal submissions
Awarded 3+ RTE Proposals
Collaborated on 3+ RTE Proposals
Reviewed an RTE Proposal
Characterization of Neutron-Irradiated Zr-1Nb-O Using Scanning Transmission Electron Microscopy - FY 2018 RTE 2nd Call, #1374
Hydride Microstructure at the Metal-Oxide Interface of Zircaloy-4 from H.B. Robinson Nuclear Reactor - FY 2017 RTE 1st Call, #840
In situ TEM Study of the Ion Irradiation Damage on Hydrides in a Zirconium Alloy for Nuclear Fuel Cladding - FY 2017 RTE 2nd Call, #974
Scanning/Transmission Electron Microscopy Characterization of Irradiated Zr-1Nb-O During Thermal Treatments - FY 2019 RTE 2nd Call, #1782
Advanced hydride moderator irradiations for microreactor and space nuclear reactor deployment - FY 2024 CINR, #5022
EPMA and TEM Characterization of a UO2 fuel pellet and cladding interaction layer - FY 2019 RTE 2nd Call, #1796
In Situ Mechanical Testing of Irradiated Zr Single Crystals - FY 2023 RTE 1st Call, #4581
In Situ Transmission Electron Microscopy Study of Radiation Damage Effects on the d-Hydride Microstructure in Irradiated Zircaloy-4 - FY 2017 RTE 3rd Call, #1099
Novel Microstructure Characterization of Pre-Hydrided ZIRLO® at Low Neutron Doses - FY 2018 RTE 2nd Call, #1455
The Nuclear Science User Facilities (NSUF) is the U.S. Department of Energy Office of Nuclear Energy's only designated nuclear energy user facility. Through peer-reviewed proposal processes, the NSUF provides researchers access to neutron, ion, and gamma irradiations, post-irradiation examination and beamline capabilities at Idaho National Laboratory and a diverse mix of university, national laboratory and industry partner institutions.
Privacy and Accessibility ยท Vulnerability Disclosure Program