首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Design and Test of Conduction-Cooled High Homogenous Magnetic Field Superconducting Magnet for Gyrotron
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Design and Test of Conduction-Cooled High Homogenous Magnetic Field Superconducting Magnet for Gyrotron

机译:回旋管传导冷却高均质磁场超导磁体的设计与试验

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A conduction-cooled superconducting magnet with the warm room of $Phi$ 80 mm and the center field of 0$sim$4 T was designed, fabricated and tested. The magnet can be operated for two different sets of coils which have different homogenous regions with lengths of 150 mm and 250 mm. The homogeneity of magnetic field is about $pm$0.25%. All the homogeneous regions are with the same starting point. The center field is decayed to 1/6–1/7 from the original point to 195 mm. The operating temperature of the magnet is defined at the 5.5K for the conduction-cooled magnet to take into account the temperature rise during charging current. The thermal equilibrium of the superconducting magnet and cryogenic system is analysed to define ramping rate, operating current and margin of superconducting magnet. The detailed design and fabrication of the superconducting magnet for Gyrotron are discussed. The test results show that the superconducting magnet can generate the requirement of magnetic field distribution.
机译:设计,制造和测试了一种传导冷却的超导磁体,其暖室为$ Phi $ 80 mm,中心磁场为0 $ sim $ 4T。磁体可以用于两组不同的线圈,这些线圈具有150 mm和250 mm长度的不同均匀区域。磁场的均匀性约为pm $ 0.25%。所有同质区域都具有相同的起点。中心场从原始点衰减到195 mm,衰减到1 / 6–1 / 7。考虑到充电电流期间的温度升高,传导冷却磁体的磁体工作温度定义为5.5K。分析超导磁体和低温系统的热平衡,以定义斜率,工作电流和超导磁体的裕度。讨论了用于回旋加速器的超导磁体的详细设计和制造。测试结果表明,超导磁体可以满足磁场分布的要求。

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