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AbstractAbstract
[en] In order to improve graphite's erosion resistance for fusion reactor application, doping with other elements has received extensive attention. Here we report on the fabrication, surface characterization and thermal properties of doped graphites produced by a Canadian company, Ceramics Kingston Ceramique Inc. (CKC). The dopants used include B, Si, Ti, Ni, and W. Surface and bulk dopant concentrations were measured by nuclear reaction analysis for B, and Rutherford backscattering for Si, Ti, Ni, and W. Concentrations ranged from ∼2-30 at% in the bulk (>1μm)and from∼1-15 at% in the near surface (<1μm). The thermal properties of the specimens were measured using the laser flash technique. In general, the dopants tend to reduce the thermal conductivity, when compared to the undoped 'CKC Reference' material. (author)
Secondary Subject
Source
International Atomic Energy Agency, Vienna (Austria); 179 p; ISBN 92-0-111803-1;
; ISSN 1018-5577;
; 2003; p. 15-18; Also available on-line: http://www-pub.iaea.org/MTCD/publications/PDF/APID-Vol12_web.pdf; 6 refs, 1 fig., 1 tab


Record Type
Book
Country of publication
BORON ADDITIONS, DOPED MATERIALS, FIRST WALL, GRAPHITE, NICKEL ADDITIONS, NUCLEAR REACTION ANALYSIS, RUTHERFORD BACKSCATTERING SPECTROSCOPY, SILICON ADDITIONS, SPATIAL DISTRIBUTION, THERMAL CONDUCTIVITY, THERMAL DIFFUSIVITY, THERMONUCLEAR REACTOR MATERIALS, TITANIUM ADDITIONS, TUNGSTEN ADDITIONS, WALL EFFECTS
ALLOYS, BORON ALLOYS, CARBON, CHEMICAL ANALYSIS, DISTRIBUTION, ELEMENTS, MATERIALS, MINERALS, NICKEL ALLOYS, NONDESTRUCTIVE ANALYSIS, NONMETALS, PHYSICAL PROPERTIES, SILICON ALLOYS, SPECTROSCOPY, THERMODYNAMIC PROPERTIES, THERMONUCLEAR REACTOR WALLS, TITANIUM ALLOYS, TRANSITION ELEMENT ALLOYS, TUNGSTEN ALLOYS
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