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MECHANICAL & PHYSICAL PROPERTIES OF ION IRRADIATION DAMAGE IN GPC
Details
Tristructural isotropic fuel particles were originally developed in Germany for high-temp gas cooled reactors and it is considered as the fuel design of choice for the next generation of nuclear reactors. Its design consists of a fuel kernel of UOx coated with several layers having different functions. One of these functions is a containments shell/diffusion barrier for the fission fragments, pyrolytic carbon. This material does not offer a perfect barrier, due to its inherent crystalline structure, which is like graphite and therefore, impossible to mold in one continuous sheet around the spherical fuel bead. Plane boundaries allow fragment diffusion at a much higher rate than through the plane. In this study we investigate the possibility of replacing pyrolytic carbon with GPC. We studied the evolution of their physical properties and structure as a function of the radiation environment in which they were exposed. The temperature that the samples were held during irradiation was similar to those in the core of the Generation IV nuclear reactor (~1000°C). A procedure for manufacturing GPC along with explorations of the chemical sand physical analysis before and after Irradiation.
Autorentext
Dr. Malek Abunaemeh erwarb 2001 einen B.S. in Elektrotechnik an der University of Alabama, gefolgt von einem M.S. in Physik 2008 an der University of Alabama in Huntsville und einem Ph.D. in Physik 2011 an der Alabama A&M University.Jaden Gonzalez erwarb seinen Bachelor of Science in Physik an der St. Johns University im Jahr 2025.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09786206153580
- Genre Physics
- Anzahl Seiten 144
- Herausgeber LAP LAMBERT Academic Publishing
- Größe H220mm x B220mm x T150mm
- Jahr 2023
- EAN 9786206153580
- Format Kartonierter Einband
- ISBN 978-620-6-15358-0
- Titel MECHANICAL & PHYSICAL PROPERTIES OF ION IRRADIATION DAMAGE IN GPC
- Autor Malek Abunaemeh
- Untertitel MECHANICAL AND PHYSICAL PROPERTIES OF IONIRRADIATION DAMAGE IN GLASSY POLYMERICCARBON FOR NUCLEAR APPLICATIONS. DE
- Sprache Englisch