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首页> 外文期刊>Plasma and Fusion Research >Bridge-Type Mechanical Lap Joint of a 100 kA-Class HTS Conductor having Stacks of GdBCO Tapes
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Bridge-Type Mechanical Lap Joint of a 100 kA-Class HTS Conductor having Stacks of GdBCO Tapes

机译:具有堆叠的GdBCO胶带的100 kA级HTS导体的桥式机械搭接接头

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In this paper, we reported design, fabrication and test of a prototype 100-kA-class high-temperature superconducting (HTS) conductor, especially for joint section, to be used for segmented HTS helical coils in the FFHR-d1 heliotron-type fusion reactor. The conductor has a geometry of three rows and fourteen layers of Gadolinium Barium Copper Oxide HTS (GdBCO) tapes embedded in copper and stainless steel jackets and has a joint section with bridge-type mechanical lap joint. We introduced improved method to fabricate the joint based on pilot experiments and we were able to apply a current of ~120 kA at 4.2 K, 0.45 T to the sample without quench at joint. The obtained joint resistance was ~2 nΩ, which was lower than our previous data. Though joint resistance increased with a rise in current and magnetic field, predicted joint resistance in the environment of actual helical coil in the FFHR-d1 was small enough to properly run the cryoplant of the reactor.
机译:在本文中,我们报告了100kA类高温超导(HTS)原型导体的设计,制造和测试,特别是用于接头部分,该导体将用于FFHR-d1日电子加速器型聚变中的分段HTS螺旋线圈反应堆。导体的几何形状为三行十四层的嵌入铜和不锈钢护套中的氧化钡钡铜氧化物高温超导(GdBCO)胶带,并具有带桥式机械搭接接头的接头部分。我们基于先导实验引入了一种改进的方法来制造接头,并且能够在4.2 K,0.45 T的电流下施加约120 kA的电流,而无需在接头处淬火。所获得的接头电阻约为2nΩ,低于我们先前的数据。尽管接头电阻随电流和磁场的增加而增加,但在FFHR-d1的实际螺旋线圈环境中预测的接头电阻很小,足以正常运行反应堆的低温设备。

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