Radiation-disorder and Aperiodicity in Irradiated Ceramics
Description
This final technical report documents the accomplishments of the program of research entitled Radiation Disorder and Aperiodicity in Irradiated Ceramics'' for the period June 22, 1989--June 21, 1992. This research forms the latest part on an on-going program, begun at MIT in 1983 under DOE support, which has had as its objectives investigation of the responses in radiation environments of ceramics heavily-irradiated with electrons, neutrons and ions, with potential applications to fusion energy technology and high-level nuclear waste storage. Materials investigated have included SiO{sub 2}, MgAl{sub 2}O{sub 4}, Al{sub 23}O{sub 27}N{sub 5}, SiC, BeO, LiAlO{sub 2}, Li{sub 2}ZrO{sub 3}, CaTiO{sub … continued below
Physical Description
79 pages
Creation Information
Hobbs, L.W. January 1, 1992.
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- United States. Department of Energy. DOE; USDOE, Washington, DC (United States)
Publisher
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Massachusetts Institute of Technology. Department of Materials Science and Engineering.
Publisher Info: Massachusetts Institute of Technology, Department of Materials Science and Engineering, Cambridge, MA (United States)Place of Publication: Cambridge, Massachusetts
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Description
This final technical report documents the accomplishments of the program of research entitled Radiation Disorder and Aperiodicity in Irradiated Ceramics'' for the period June 22, 1989--June 21, 1992. This research forms the latest part on an on-going program, begun at MIT in 1983 under DOE support, which has had as its objectives investigation of the responses in radiation environments of ceramics heavily-irradiated with electrons, neutrons and ions, with potential applications to fusion energy technology and high-level nuclear waste storage. Materials investigated have included SiO{sub 2}, MgAl{sub 2}O{sub 4}, Al{sub 23}O{sub 27}N{sub 5}, SiC, BeO, LiAlO{sub 2}, Li{sub 2}ZrO{sub 3}, CaTiO{sub 3}KTaO{sub 3} and Ca(Zr, Pu)Ti{sub 2}O{sub 7}. The program initially proposed for 1989 had as its major objectives two main thrusts: (1) research on defect aggregation in irradiated non-oxide ceramics, and (2) research on irradiation-induced amorphization of network silicas and phosphates.
Physical Description
79 pages
Notes
OSTI; NTIS; INIS; GPO Dep.
Subjects
Keywords
- Alkali Metal Compounds
- Alkaline Earth Metal Compounds
- Aluminates
- Aluminium Compounds
- Baryons
- Beryllium Compounds
- Beryllium Oxides
- Carbides
- Carbon Compounds
- Ceramics
- Chalcogenides
- Coherent Scattering
- Crystal Structure
- Diffraction
- Document Types
- Electron Diffraction
- Electrons
- Elementary Particles
- Fermions
- Hadrons
- Leptons
- Lithium Compounds
- Ma
- Management
- Materials
- Materials Studies-- (1992-)
- Minerals
- Molecular Structure
- Neutrons
- Nucleons
- Oxide Minerals
- Oxides
- Oxygen Compounds
- Physical Radiation Effects
- Progress Report
- Quartz
- Radiation Effects
- Radioactive Waste Disposal
- Radioactive Waste Management
- Refractory Metal Compounds
- Scattering
- Silicon Carbides
- Silicon Compounds
- Silicon Oxides
- Tantalates
- Tantalum Compounds
- Thermonuclear Reactor Materials
- Titanates
- Titanium Compounds
- Transition Element Compounds
- Waste Disposal
- Waste Management
- Zirconium Compounds 360206* -- Ceramics, Cermets, & Refractories-- Radiation Effects
- Zirconium Oxides
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- Other: DE92015051
- Report No.: DOE/ER/45396-3
- Grant Number: FG02-89ER45396
- Digital Object Identifier: https://doi.org/10.2172/5266119
- Office of Scientific & Technical Information Report Number: 5266119
- Archival Resource Key: ark:/67531/metadc1074684
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Creation Date
- January 1, 1992
Added to The UNT Digital Library
- Feb. 4, 2018, 10:51 a.m.
Description Last Updated
- Aug. 22, 2022, 12:06 p.m.
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Hobbs, L.W. Radiation-disorder and Aperiodicity in Irradiated Ceramics, report, January 1, 1992; Cambridge, Massachusetts. (https://digital.library.unt.edu/ark:/67531/metadc1074684/: accessed July 16, 2024), University of North Texas Libraries, UNT Digital Library, https://digital.library.unt.edu; crediting UNT Libraries Government Documents Department.