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首页> 外文期刊>Applied Superconductivity, IEEE Transactions on >Fabrication and Test of an 8-T Superconducting Split Magnet System With Large Crossing Warm Bore
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Fabrication and Test of an 8-T Superconducting Split Magnet System With Large Crossing Warm Bore

机译:大跨温孔8-T超导分裂磁体系统的制作与测试

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A conduction-cooled superconducting split magnet system with large crossing warm bore has been successfully constructed in our laboratory for material processing applications. The magnet system design was described in a previous paper. The magnet is composed of six NbTi low temperature superconducting coils, which generate 5.5-T central magnetic field and two Bi2223/Ag high temperature superconducting (HTS) insert coils, which generate 2.5-T central magnetic field and assembled in the form of split coil groups. The magnet has a 136-mm split gap to accommodate the crossing warm bore of 100 mm in diameter. The magnet system is cooled by two GM cryocoolers. The initial cooldown takes 9.2 days and the final temperature of the magnet is about 4.0 K. The HTS coils and NbTi coils are to be operated in the driven mode with two independent power supplies, under the operating currents of 200 A (HTS) and 139 A (NbTi), respectively. The magnet is successfully powered up to 8 T with a the ramp time of 290 min. In this paper, the fabrication and test of the superconducting split magnet system are presented.
机译:在我们的实验室中,为材料加工应用成功地构建了具有大交叉温孔的传导冷却超导分裂磁体系统。以前的论文中描述了磁体系统的设计。磁体由六个产生5.5-T中心磁场的NbTi低温超导线圈和两个产生2.5-T中心磁场的Bi2223 / Ag高温超导(HTS)插入线圈组成,并以分流线圈的形式组装组。磁铁具有136毫米的裂隙,可容纳直径100毫米的交叉加热孔。磁铁系统由两个GM低温冷却器冷却。最初的冷却时间为9.2天,磁体的最终温度约为4.0K。HTS线圈和NbTi线圈应在两个200 A(HTS)和139 A的工作电流下,以两个独立的电源在驱动模式下运行分别为(NbTi)。磁铁以290分钟的斜坡时间成功通电至8T。本文介绍了超导分裂磁体系统的制造和测试。

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