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AbstractAbstract
[en] Studies of plasma interaction with titanium coated ferritic steel is performed on IR-T1 tokamak. Titanium coating is one of the candidates for the plasma facing materials in a tokomak. Titaniumization is carried out by a sputtering method. Some of the samples were baked (3 hours at 460 deg. C) before sputtering. Atomic Force Microscopy (AFM) analyses before and after discharge in r/a = l .04 carried out. The samples (with distinctive titanium layers) were placed at different depths inside the vacuum vessel of the IR-T1 tokamak in the SOL region. A comparison of the titanium coated steel with bare ferritic steel exposed to plasma tokamak and glow discharges is made in this research. Depth of impurity penetration and retention, and the surface roughness are measured by using surface analysis methods. Rutherford backscattering method is used to measure the content of nitrogen, oxygen and titanium, before and after discharges. The result is shown a change in roughness with respect to position of samples
Primary Subject
Source
17. IAEA technical meeting on research using small fusion devices; Lisbon (Portugal); 22-24 Oct 2007; (c) 2008 American Institute of Physics; Country of input: International Atomic Energy Agency (IAEA)
Record Type
Journal Article
Literature Type
Conference
Journal
Country of publication
ATOMIC FORCE MICROSCOPY, BEAM-PLASMA SYSTEMS, COMPARATIVE EVALUATIONS, CONTAINERS, DEPTH, FERRITIC STEELS, FIRST WALL, GLOW DISCHARGES, NITROGEN, OXYGEN, PLASMA, PLASMA SCRAPE-OFF LAYER, ROUGHNESS, RUTHERFORD BACKSCATTERING SPECTROSCOPY, SPUTTERING, THERMONUCLEAR REACTOR MATERIALS, TITANIUM, TOKAMAK DEVICES
ALLOYS, BOUNDARY LAYERS, CARBON ADDITIONS, CLOSED PLASMA DEVICES, DIMENSIONS, ELECTRIC DISCHARGES, ELEMENTS, EVALUATION, IRON ALLOYS, IRON BASE ALLOYS, LAYERS, MATERIALS, METALS, MICROSCOPY, NONMETALS, SPECTROSCOPY, STEELS, SURFACE PROPERTIES, THERMONUCLEAR DEVICES, THERMONUCLEAR REACTOR WALLS, TRANSITION ELEMENT ALLOYS, TRANSITION ELEMENTS
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