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Stable predictable and training-free operation of superconducting Bi-2212 Rutherford cable racetrack coils at the wire current density of 1000 A/mm2

机译:Bi-2212 Rutherford电缆赛道线圈在1000 A / mm2的线电流密度下稳定可预测且无需训练

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摘要

High-temperature superconductors (HTS) could enable high-field magnets stronger than is possible with Nb-Ti and Nb3Sn, but two challenges have so far been the low engineering critical current density JE, especially in high-current cables, and the danger of quenches. Most HTS magnets made so far have been made out of REBCO coated conductor. Here we demonstrate stable, reliable and training-quench-free performance of Bi-2212 racetrack coils wound with a Rutherford cable fabricated from wires made with a new precursor powder. These round multifilamentary wires exhibited a record JE up to 950 A/mm2 at 30 T at 4.2 K. These coils carried up to 8.6 kA while generating 3.5 T at 4.2 K at a JE of 1020 A/mm2. Different from the unpredictable training performance of Nb-Ti and Nb3Sn magnets, these Bi-2212 magnets showed no training quenches and entered the flux flow state in a stable manner before thermal runaway and quench occurred. Also different from Nb-Ti, Nb3Sn, and REBCO magnets for which localized thermal runaways occur at unpredictable locations, the quenches of Bi-2212 magnets consistently occurred in the high field regions over a long conductor length. These characteristics make quench detection simple, enabling safe protection, and suggest a new paradigm of constructing quench-predictable superconducting magnets from Bi-2212.
机译:高温超导体(HTS)可以使强磁场磁体强于Nb-Ti和Nb3Sn,但迄今为止,两个挑战是工程临界电流密度JE低,特别是在大电流电缆中,还有危险。淬灭。到目前为止,大多数HTS磁体都是由REBCO涂层导体制成的。在这里,我们展示了Bi-2212赛道线圈的稳定,可靠和无训练骤冷的性能,该线圈缠绕有卢瑟福电缆,该卢瑟福电缆是用新的前体粉末制成的。这些圆形的多丝线在4.2 K的30 T下表现出创纪录的JE高达950 A / mm 2 。这些线圈在4.2 K的条件下以10 A / mm的速率在4.2 carriedK时产生高达3.5 T的电流。 mm 2 。与Nb-Ti和Nb3Sn磁体的不可预测的训练性能不同,这些Bi-2212磁体没有显示出训练失超,并且在发生热失控和失超之前以稳定的方式进入磁通流动状态。与Nb-Ti,Nb3Sn和REBCO磁体不同,它们的局部热失控发生在不可预测的位置,Bi-2212磁体的淬灭始终在长导体长度的高磁场区域中持续发生。这些特性使淬灭检测变得简单,可以提供安全保护,并提出了一种用Bi-2212构建可预测淬火的超导磁体的新范例。

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