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This work focuses on two topics. The first is the investigation of producing filaments on copper-stabilized coated conductors, with striations made after or before electroplating the tape. The second topic is the applicability of the striations for reducing the AC losses of cables, in particular the CORC® and RACC cables, which are made with high-temperature superconductor (HTS) striated tapes.
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Self-propagating high-temperature synthesis --- Research --- History.
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Ceramic materials. --- Armor-plate --- Self-propagating high-temperature synthesis. --- Materials.
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Copper oxide superconductors. --- High temperature superconductors. --- Laser beams.
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High temperature superconductors. --- Electric generators. --- Wind turbines --- Mathematical models.
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Ceramic materials. --- Armor-plate --- Self-propagating high-temperature synthesis. --- Materials.
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The present work investigates neutron-irradiated EUROFER97 by high-temperature indentation. Before, a test procedure is defined for the prototype device Karlsruhe high-temperature indenter. The procedure leads to a quality of the test results at high temperatures comparable to commercial devices at room temperature. The results contribute to a better understanding of structural materials of future fusion reactors.
Mechanical engineering & materials --- Fusion --- Strukturmaterialien --- Härte --- Neutronenschäden --- Hochtemperatur --- Hardness --- High-temperature --- structural materials --- Neutron-induced defects
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