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Mechanical Effects of the Non-Uniform Current Distribution on HTS Coils for Accelerators Wound with REBCO Roebel Cable

机译:REBCO Roebel电缆缠绕的加速器HTS线圈上电流分布不均匀的机械效应

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摘要

Future high-energy accelerators will need very high magnetic fields in the range of 20 T. The EuCARD-2 WP10 Future Magnets collaboration is aiming at testing HTS-based Roebel cables in an accelerator magnet. The demonstrator should produce around 17 T, when inserted into the 100 mm aperture of Feather-M2 13 T outsert magnet. HTS Roebel cables are assembled from meander shaped REBCO coated conductor tapes. In comparison with fair level of uniformity of current distribution in cables made out of round Nb-Ti or Nb3Sn strands, current distribution within the coils wound from Roebel cables is highly non-homogeneous. It results in nonuniform electromagnetic force distribution over the cable that could damage the very thin REBCO superconducting layer. This paper focuses on the numerical models to describe the effect of the non-homogenous current distribution on stress distribution in the demonstrator magnet designed for the EuCARD-2 project. Preliminary results indicate that the impregnation bonding betweenthecableglassfiberinsulationandlayer-to-layerinsulation plays a significant role in the pressure distribution at the cable edges. The stress levels are safe for Roebel cables. Assuming fully bonded connection at the interface, the stresses around the edges are reduced by a large factor.
机译:未来的高能加速器将需要20 T范围内的极高磁场。EuCARD-2 WP10未来磁体的合作旨在测试加速器磁体中基于HTS的Roebel电缆。当插入Feather-M2 13 T插入磁体的100 mm孔中时,演示器应产生约17 T的电流。 HTS Roebel电缆由曲折形REBCO涂层导体带组装而成。与圆形Nb-Ti或Nb3Sn绞线制成的电缆中电流分布的均一水平相比,用Roebel电缆缠绕的线圈内的电流分布非常不均匀。这会导致电缆上的电磁力分布不均匀,从而损坏非常薄的REBCO超导层。本文关注于数值模型,以描述为EuCARD-2项目设计的演示磁铁中非均匀电流分布对应力分布的影响。初步结果表明,电缆玻璃纤维绝缘层与层间绝缘层之间的浸渍结合在电缆边缘的压力分布中起着重要作用。应力水平对于Roebel电缆是安全的。假设在界面处完全粘合连接,则边缘周围的应力会大大降低。

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