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A CORC (R) cable insert solenoid: the first high-temperature superconducting insert magnet tested at currents exceeding 4 kA in 14 T background magnetic field

机译:CORC(R)电缆插入螺线管:第一个高温超导插入磁铁在14吨背景磁场中超过4 ka的电流测试

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摘要

The results presented in this Letter describe the successful test of the first high-temperature superconducting multi-tesla insert solenoid tested at currents exceeding 4 kA while operating in a background magnetic field of a low-temperature superconducting outsert magnet. A 45-turn insert solenoid, wound from 19 meters of CORC (R) cable, was designed to operate at high current, high current density, and high hoop stress in high magnetic background field; a combination that is essential in the development of low-inductance, high-field magnets. The CORC (R) cable insert solenoid was successfully tested in liquid helium in background magnetic fields of up to 14 T, resulting in a combined central magnetic field of 15.86 T and a peak magnetic field on the conductor of 16.77 T at a critical current of 4404 A, a winding current density of 169 A mm(-2), an engineering current density of 282 A mm(-2), and a JBr source stress of 275 MPa. Stable operation of the CORC (R) cable insert magnet in its superconducting-to-normal transition was demonstrated, during charging at rates of 20-50 A s(-1), without inducing a quench. The results are a clear demonstration of the major benefits of this multi-tape CORC (R) magnet conductor in which current sharing between tapes is possible, thereby removing some of the stringent conductor requirements of single-tape magnets. The CORC (R) cable insert solenoid demonstrated operation at about 86% of the expected CORC (R) cable performance and showed no significant degradation after 16 high-current test cycles in background fields ranging from 10 to 14 T. CORC (R) cables have matured into practical and reliable high-field magnet conductors, achieving important high current, high current density, stress tolerance, and quench protection milestones for high field magnet technology. They have established a straightforward path towards low-inductance magnets that operate at magnetic fields exceeding 20 T.
机译:在该字母中呈现的结果描述了在低温超导外磁铁的背景磁场中操作的在超过4ka的电流下测试的第一高温超导多履带插入螺线管的成功测试。 45匝插入螺线管从19米的CORC(R)电缆卷绕,设计用于高电流,高电流密度和高磁性背景领域的高箍应力;一种在低电感,高场磁体的开发中至关重要的组合。 CORC(R)电缆插入螺线管在液氦中成功测试在最多14吨的背景磁场中,导致15.86 T的组合中央磁场和在临界电流下的导体上的峰值磁场。 4404A,绕组电流密度为169Amm(-2),工程电流密度为282Amm(-2),以及275MPa的JBR源应力。在以20-50A s(-1)速率的速率下,在20-50A(-1)的速率下,在不诱导骤冷的情况下,对其超导到正常转变的稳定操作进行了说明。结果是清楚地说明该多带Corc(R)磁铁导体的主要优点,其中胶带之间的电流共用是可能的,从而消除了单带磁体的一些严格导体要求。 CORC(R)电缆插入螺线管在预期的CORC(R)电缆性能的约86%的距离下进行操作,并且在从10到14 T.Corc(R)电缆的背景场中的16个高电流测试周期之后没有显着降解已经成熟成实用可靠的高场磁铁导体,实现了高场磁铁技术的重要高电流,高电流密度,应力耐受性和淬火保护里程碑。它们已经建立了朝向低电感磁铁的直接路径,该磁铁在超过20t的磁场下运行。

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