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首页> 外文期刊>Cryogenics >Development of superconducting and cryogenic technology in the Institute for Technical Physics (ITP) of the Research Center Karlsruhe
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Development of superconducting and cryogenic technology in the Institute for Technical Physics (ITP) of the Research Center Karlsruhe

机译:卡尔斯鲁厄研究中心技术物理研究所(ITP)的超导和低温技术的发展

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Since the early 1970s the Institute for Technical Physics of the Research Center Karlsruhe has been involved in the development of superconductivity for research and industrial applications. A broad program with a focus on the superconducting magnet technology was established to include large magnets for nuclear fusion, high-field magnets for nuclear magnetic resonance spectrometers, ore separation and energy storage magnets. Research and development work was performed in collaborative projects with other national as well as international institutions and industry. The success of these projects has been supported by a broad foundation of engineering science in superconductor development, electrical and cryogenic engineering. Several well known test facilities like TOSKA, STAR, HOMER, MTA along with well equipped laboratories for conductor development, materials at cryogenic temperatures, cryogenic high-voltage engineering have made substantial contributions to in-house, national and international projects. A strong cryogenic infrastructure with two refrigerators and sophisticated cooling circuits from about 4.5 K down to 1.8 K assure the reliable operation of these large facilities. Last but not least, cryogenic research, including vacuum pumps for International Thermonuclear Experimental Reactor, improvements in thermal insulation, cryogenic instrumentation and small on board refrigerators has supported progress in this field. High-temperature superconductivity projects for low AC loss conductors, a 70 kA current lead and a fault current limiter are currently in progress.
机译:自1970年代初以来,卡尔斯鲁厄研究中心的技术物理研究所一直致力于研究和工业应用的超导性研究。建立了以超导磁体技术为重点的广泛计划,其中包括用于核聚变的大型磁体,用于核磁共振谱仪的高场磁体,矿石分离和储能磁体。在与其他国家以及国际机构和行业的合作项目中进行了研发工作。这些项目的成功得到了超导体开发,电气和低温工程领域广泛的工程科学基础的支持。几个著名的测试设施,如TOSKA,STAR,HOMER,MTA,以及设备完善的导体开发实验室,低温材料,低温高压工程,为内部,国家和国际项目做出了巨大贡献。强大的低温基础设施,包括两个冰箱和复杂的冷却回路(从大约4.5 K到最低1.8 K),确保了这些大型设施的可靠运行。最后但并非最不重要的一点是,低温研究,包括用于国际热核实验反应堆的真空泵,绝热技术的改进,低温仪器和小型车载冰箱,为该领域的发展提供了支持。针对交流损耗低的导体的高温超导项目,70 kA电流引线和故障限流器目前正在进行中。

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