由稳定条纹 REBCO 带缠绕的新型 TORT 电缆的特性分析,以降低磁化交流损耗

Eva Cuninková, Lubomír Frolek, Ján Šouc, Filip Ferenčík, Lucia Bónová, Zoltán Száraz, Michal Skarba, Simona Hulačová, Marcela Pekarčíková and Štefan Šimon
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摘要

REBCO(稀土氧化钡铜)高温超导带在绕制大型磁体线圈方面具有很大的潜力。圆管(TORT)电缆上的磁带是实现适合绕制磁体线圈的导体的一种很有前途的选择。然而,某些应用(如加速器磁体)需要使用低磁化替代电流(AC)损耗的超导电缆。有几种方法可以降低 TORT 电缆的交流损耗。我们的第一种方法是用基于聚合物和复合材料的介电材料(即用碳纤维增强的聚对苯二甲酸乙二醇酯改性材料)取代铜前体,从而消除涡流。通过剥离铜涂层 REBCO 带,进一步降低了磁滞损耗。为了实现这些目标,我们采用了化学机械剥离法。不过,在剥离过程中,超导体会暴露在外,这可能会导致以后与湿度有关的降解。因此,我们使用磁控溅射沉积了基于 Ti/AlN 的多层膜,以便在剥离过程后立即保护超导体免受水和大气湿气的腐蚀。随后,将剥离带和非剥离带分别缠绕到直径为 10 毫米、7 毫米和 5.5 毫米的成型器上,然后对短 TORT 电缆进行弯曲测试。在每个技术步骤之后,对样品进行直流电测量,最后测量交流损耗。
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Characterization of a novel TORT cable wound of stabilized striated REBCO tapes for reduced magnetization AC losses
REBCO (rare-earth barium copper oxide) high-temperature superconducting tapes, have a high potential for winding of large magnet coils. Tapes on round tube (TORT) cables represent a promising option for achieving a conductor suitable for the winding of magnet coils. However, certain applications, such as accelerator magnets, require the use of superconducting cables with low magnetization alternative current (AC) losses. There are several methods to reduce AC losses in TORT cables. Our first approach was to get rid of eddy currents by replacing the copper former with dielectric materials based on polymers and composites, i.e. polyethylene terephthalate glycol-modified reinforced with carbon fibers. Additional reduction of hysteretic loss was achieved by striating of copper coated REBCO tapes. We employed chemo-mechanical striating, for these objectives. However, the superconductor is exposed during the striating process, which may lead to later moisture-related degradation. Hence multilayers based on Ti/AlN were deposited using magnetron sputtering in order to protect the superconductor immediately after the striating process from water and atmospheric moisture corrosion. Subsequently, striated tapes as well as the non-striated tapes were then wound onto formers with diameters of 10 mm, 7 mm and 5.5 mm, and then on the short TORT cables bending tests were performed. After each technological step, direct current measurements were performed on the samples and finally the AC losses were measured.
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