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Fabiola Cappia
Fabiola Cappia
在 inl.gov 的电子邮件经过验证
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引用次数
引用次数
年份
Critical assessment of the pore size distribution in the rim region of high burnup UO2 fuels
F Cappia, D Pizzocri, A Schubert, P Van Uffelen, G Paperini, D Pellottiero, ...
Journal of Nuclear Materials 480, 138-149, 2016
522016
A critical review of high burnup fuel fragmentation, relocation, and dispersal under loss-of-coolant accident conditions
N Capps, C Jensen, F Cappia, J Harp, K Terrani, N Woolstenhulme, ...
Journal of Nuclear Materials 546, 152750, 2021
492021
Postirradiation examinations of low burnup U3Si2 fuel for light water reactor applications
F Cappia, JM Harp
Journal of Nuclear Materials 518, 62-79, 2019
482019
Properties of the high burnup structure in nuclear light water reactor fuel
T Wiss, VV Rondinella, RJM Konings, D Staicu, D Papaioannou, ...
Radiochimica Acta 105 (11), 893-906, 2017
462017
Microhardness and Young's modulus of high burn-up UO2 fuel
F Cappia, D Pizzocri, M Marchetti, A Schubert, P Van Uffelen, L Luzzi, ...
Journal of Nuclear Materials 479, 447-454, 2016
452016
Modeling high burnup structure in oxide fuels for application to fuel performance codes. part I: High burnup structure formation
T Barani, D Pizzocri, F Cappia, L Luzzi, G Pastore, P Van Uffelen
Journal of Nuclear Materials 539, 152296, 2020
292020
A semi-empirical model for the formation and depletion of the high burnup structure in UO2
D Pizzocri, F Cappia, L Luzzi, G Pastore, VV Rondinella, P Van Uffelen
Journal of Nuclear Materials 487, 23-29, 2017
292017
Post-irradiation examinations of UO2 composites as part of the Accident Tolerant Fuels Campaign
F Cappia, JM Harp, K McCoy
Journal of Nuclear Materials 517, 97-105, 2019
262019
Grain size and phase purity characterization of U3Si2 fuel pellets
RE Hoggan, KR Tolman, F Cappia, AR Wagner, JM Harp
Journal of Nuclear Materials 512, 199-213, 2018
242018
Electron microscopy characterization of fast reactor MOX Joint Oxyde-Gaine (JOG)
F Cappia, BD Miller, JA Aguiar, L He, DJ Murray, BJ Frickey, JD Stanek, ...
Journal of Nuclear Materials 531, 151964, 2020
192020
High-temperature and melting behaviour of nanocrystalline refractory compounds: an experimental approach applied to thorium dioxide
F Cappia, D Hudry, E Courtois, A Janßen, L Luzzi, RJM Konings, ...
Materials Research Express 1 (2), 025034, 2014
162014
High frequency acoustic microscopy for the determination of porosity and Young’s modulus in high burnup uranium dioxide nuclear fuel
M Marchetti, D Laux, F Cappia, M Laurie, P Van Uffelen, VV Rondinella, ...
IEEE Transactions on Nuclear Science 63 (3), 1520-1525, 2016
132016
Modeling high burnup structure in oxide fuels for application to fuel performance codes. Part II: Porosity evolution
T Barani, D Pizzocri, F Cappia, G Pastore, L Luzzi, P Van Uffelen
Journal of Nuclear Materials 563, 153627, 2022
122022
Post-irradiation examinations of annular mixed oxide fuels with average burnup 4 and 5% FIMA
F Cappia, K Tanaka, M Kato, K McClellan, J Harp
Journal of Nuclear Materials 533, 152076, 2020
122020
Comparison of the radial effects of burnup on fast reactor MOX fuel microstructure and solid fission products
RJ Parrish, F Cappia, A Aitkaliyeva
Journal of Nuclear Materials 531, 152003, 2020
122020
Investigation of very high burnup UO2 fuels in Light Water Reactors
F Cappia
Technische Universität München, 2017
122017
Detailed characterization of a PWR fuel rod at high burnup in support of LOCA testing
F Cappia, K Wright, D Frazer, K Bawane, B Kombaiah, W Williams, ...
Journal of Nuclear Materials 569, 153881, 2022
112022
Laser melting of nano-crystalline uranium dioxide
F Cappia, R Jovani-Abril, J Spino, L Luzzi, A Janßen, D Manara
Progress in Nuclear Energy 72, 11-16, 2014
112014
Development of axial and ring hoop tension testing methods for nuclear fuel cladding tubes
D Kamerman, F Cappia, K Wheeler, P Petersen, E Rosvall, T Dabney, ...
Nuclear Materials and Energy 31, 101175, 2022
102022
Postirradiation Examination of the ATF-1 Experiments-2018 Status
JM Harp, F Cappia, L Capriotti
Idaho National Lab.(INL), Idaho Falls, ID (United States), 2018
102018
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