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首页> 外文期刊>Superconductor Science & Technology >AC loss and contact resistance in REBCO CORC (R), Roebel, and stacked tape cables
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AC loss and contact resistance in REBCO CORC (R), Roebel, and stacked tape cables

机译:Rebco Corc(R),Roebel和堆叠磁带电缆中的交流损耗和接触电阻

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Many high-temperature superconductor (HTS) applications require superconducting cables with high currents while operating in an alternating magnetic field. HTS cables should be composed of numerous superconducting tapes to achieve the required current capacity. Alternating current and magnetic fields cause AC losses in such cables and can provoke conductor instability. AC losses and contact resistances were measured of several cable designs based on commercially available REBCO tapes at the University of Twente. The AC loss was measured under identical conditions for eight REBCO conductors manufactured according to three types of cabling methods-CORC (R) (Conductor on Round Core), Roebel, and stacked tape, including a full-size REBCO CICC (cable in conduit conductor). The measurements were done at T = 4.2 K without transport current in a sinusoidal AC magnetic field of 0.4 T amplitude and frequencies from 5 to 55 mHz. The AC loss was measured simultaneously by calibrated gas flow calorimeter utilizing the helium boil-off method and by the magnetization method using pick-up coils. Also, the AC loss of two CORC (R) conductors and a Roebel cable was measured at 77 K. Each conductor was measured with and without background field of 1 T. The measured AC coupling loss in the CORC (R) and Roebel conductors is negligible at 4.2 K for the applied conditions while at 77 K coupling loss was observed for all conductors. The absence of coupling loss at 4.2 K can be explained by shielding of the conductor interior; this is confirmed with measurement and calculation of the penetration field of CORC (R) and Roebel cables. The inter-tape contact resistance was measured for CORC (R) and stacked tape samples at 4.2 and 77 K. It was demonstrated that a short heat treatment of CORC (R) conductor with solder-coated tapes activates tape-to-tape soldering and decreases the contact resistance. The reduction of contact resistance by two orders in magnitude to tens of nOm is comparable with the interstrand contact resistance in ITER Nb3Sn type conductors.
机译:许多高温超导体(HTS)应用需要具有高电流的超导电缆,同时在交替磁场中操作。 HTS电缆应由许多超导磁带组成,以实现所需的电流容量。交流电流和磁场导致这种电缆中的交流损耗,并挑选导体不稳定性。基于Twente大学的市售Rebco Tapes的几种电缆设计测量了AC损耗和接触电阻。根据三种类型的布线方法 - CORC(R)(圆形核心),罗伊贝尔和堆叠胶带,包括全尺寸雷柏CICC(导管导线电缆)(包括导管导线)的三种recco导体的相同条件下测量AC损耗)。测量在T = 4.2 k下完成,在正弦交流磁场中的输送电流为0.4 T振幅和5至55MHz的频率。利用氦蒸发方法和使用拾取线圈的磁化方法同时通过校准气流量热计同时测量交流损耗。此外,在77k测量两个CORC(R)导体和滚纸电缆的交流损耗。每种导体都是用1T的背景场测量的。在CORC(R)和罗伊贝尔导体中测量的AC耦合损耗是对于应用条件的4.2K可忽略不计,而所有导体都观察到77K耦合损耗。通过屏蔽导体内部,可以解释4.2 k下的耦合损耗的缺失;通过测量和计算Corc(R)和Roebel电缆的渗透场来确认这一点。在4.2和77k下测量CORC(R)和堆叠胶带样品的胶带接触电阻。结果表明,带焊接胶带的CORC(R)导体的短热处理激活带状卷筒焊接和降低接触电阻。减少接触电阻的两个订单幅度为几十的NOM是与ITER NB3SN型导体中的Interstrand接触电阻相当。

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