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Bridge-type mechanical lap joint of HTS STARS conductors using an integrated joint piece

机译:使用一体式连接件的HTS STARS导体的桥式机械搭接

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Joint-winding of high-temperature superconducting (HTS) helical coils has been proposed as a challenging option for the large helical device (LHD)-type fusion reactors, FFHR series. The coils are wound by connecting helical conductor segments using bridge-type mechanical lap joints with indium foils inserted into the joints. A previous study achieved 1.8 n Omega using a 100-kA-class STARS (Stacked Tapes Assembled in Rigid Structure) conductor joint at 100 kA, 4.2 K and 0.45 T. However, it took eighteen hours to join the conductors because each REBCO (Rare-earth Barium Copper Oxide) tape was joined individually and in series. This study introduced an integrated joint piece to join 10-kA-class STARS conductors, which possibly makes the fabrication time to be less than three hours per one conductor joint. We also applied heat treatment at 120 degrees C during the joining process to obtain uniform joint pressure distribution and a large true area of contact. The joint resistivity and critical current for each REBCO tape of the joint were comparable to those for a single lap joint at 77 K. The joint resistivity was also evaluated at 4.2 K, which was one-fourth to one-third of the previous result obtained during testing of the 100-kA-class STARS conductor joint.
机译:对于大型螺旋装置(LHD)型聚变反应堆FFHR系列,提出了将高温超导(HTS)螺旋线圈的联合绕组作为具有挑战性的选择。通过使用桥式机械搭接接头连接螺旋导体段来缠绕线圈,并在接头中插入铟箔。先前的研究使用100 kA,4.2 K和0.45 T的100 kA级STARS(刚性结构组装带)导体接头达到1.8 n Omega。但是,由于每个REBCO(Rare接地(单独的)。这项研究介绍了一种集成接头,用于连接10-kA级STARS导体,这可能会使每个导体接头的制造时间少于3小时。我们还在接合过程中在120摄氏度下进行了热处理,以获得均匀的接合压力分布和较大的实际接触面积。接头的每个REBCO胶带的接头电阻率和临界电流与单搭接接头在77 K时的电阻率和临界电流相当。在4.2 K时也评估了接头电阻率,这是先前获得的结果的四分之一到三分之一在测试100 kA级STARS导体接头时。

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