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MgB2 for MRI Magnets: Test Coils and Superconducting Joints Results

机译:MGB2用于MRI磁体:测试线圈和超导关节结果

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摘要

Among key design and operation issues for MgB2 relevant to MRI magnets are: uniformity of current-carrying capacity over long lengths (>2 km) of wire; and reliability of a splicing technique. This paper presents experimental results of current-carrying capacities of a small test coil and joints, both made from MgB2 round wires, multifilament and monofilament (mono), manufactured by Hyper Tech Research, Inc. The test coils were wound with 95-m long unreacted, C (carbon)-doped MgB2 multifilament wire, sintered at 700°C for 90 min. The critical currents were measured in the 4.2 K–15 K and 0 T–5 T ranges. We have modified our original splicing technique, proven successful with unreacted, un-doped MgB2 multifilament wire sintered at 570°C, and applied it to splice both un-doped and C-doped mono wires sintered at 700°C. Most consistently good results were obtained using the un-doped mono wires. Also presented are results of a small joint-coil-PCS assembly of mono wire, operated in persistent mode at 50 A at >10 K.
机译:与MRI磁铁相关的MGB2的关键设计和操作问题是:电流承载能力的均匀性,长度长度(> 2km)的电线;拼接技术的可靠性。本文介绍了由MgB2圆线,多丝和单丝(单丝(Mono)制成的小型测试线圈和接头的实验结果,由Hyper Tech Research,Inc.制造的测试线圈长95米未反应的C(碳) - 掺杂的MgB2复丝线,在700℃下烧结90分钟。在4.2k-15k和0 T-5 T范围内测量临界电流。我们已经修改了我们的原始拼接技术,以570℃的未反应,未掺杂的MGB2复丝线成功,并将其涂在700℃下烧结两根未掺杂和C掺杂的单线。使用未掺杂的单线线获得最符合的良好结果。还提出了Mono Wire的小关节线圈 - PC组件的结果,在50a> 10k处以持续模式操作。

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