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First test operation of 40 tesla class hybrid magnet system

机译:40特斯拉级混合磁体系统的首次测试运行

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We have completed the fabrication of a 40 T class hybrid magnet system including a 15 MW dc power supply, a 15 MW water-cooling system, a helium liquefier/refrigerator, and a hybrid magnet composed of an outer superconducting magnet and an inner water-cooled magnet. We are now beginning to test the system; this paper describes the first results. The outer superconducting magnet is designed to be cryogenically stable at 4.2 K and to generate background fields up to 15 T in a room temperature bore of 400 mm. The maximum operating current and the maximum stored energy are 1476 /spl Aring/ and 63.3 MJ, respectively. So far, we have tested the superconducting magnet to 14.2 T without quenching. We have fabricated two kinds of inner water-cooled magnets (Insert A and Insert B), which are designed to generate additional fields up to 25 T and 20 T in clear bores of 30 mm and 50 mm, respectively, in a background field of 15 T. We have tested the hybrid magnet system to 32.1 T using Insert B, and to 35.7 T using Insert A.
机译:我们已经完成了40 T级混合磁体系统的制造,该系统包括一个15 MW直流电源,一个15 MW水冷系统,一个氦液化器/冰箱,以及一个由外部超导磁体和内部水组成的混合磁体。冷却的磁铁。我们现在开始测试系统;本文介绍了第一个结果。外部超导磁体设计为在4.2 K时具有低温稳定性,并在400 mm的室温孔中产生高达15 T的背景场。最大工作电流和最大存储能量分别为1476 / spl Aring /和63.3 MJ。到目前为止,我们已经对超导磁体进行了14.2 T的淬火测试。我们制造了两种内部水冷磁体(插入件A和插入件B),它们设计成在背景磁场为30 mm和50 mm的透明孔中分别产生高达25 T和20 T的附加磁场。 15吨。我们已经测试了使用插入件B的混合磁体系统至32.1 T和使用插入件A的35.7T。

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