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Low AC loss cable produced from transposed striated CC tapes

机译:交变条纹CC胶带制成的低AC损耗电缆

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In this work we demonstrate that the use of striated tapes from coated conductors (CCs) significantly reduces the dissipation of a cable made of tapes wound helically on a round core when it is exposed to AC magnetic field. The coupling loss can vanish provided that the striations ensure electrical insulation between filaments and the cable length corresponds to an entire number of lay pitches. In our study we compare the magnetization loss in two cable models exposed to magnetic field perpendicular to their longitudinal axis. The overall geometry of the models was identical: each consisted of three tapes 4 mm wide that were placed with a pitch of 50 mm in a single layer on the 8 mm diameter round core. The cable length was designed to reach two complete tape pitches. In the first cable (the reference cable) tapes without striation were used; the second cable was prepared using similar tapes but striated to five filaments by laser processing. The AC loss was measured for cables without terminations as well as with low resistance terminations; this latter configuration simulates the conditions in a magnet winding. Our experiments have clearly shown the loss behavior expected in the regime of uncoupled filaments. In particular, at AC fields of 0.1 T amplitude the loss in the cable from striated tapes is five times lower than in the reference cable. Numerical models have explained the experimentally observed cable behavior in the whole range of AC fields.
机译:在这项工作中,我们证明了使用带涂层导体(CC)的带状条纹可以显着减少由螺旋形缠绕在圆芯上的带制成的电缆在暴露于交流磁场时的耗散。如果条纹确保细丝之间的电绝缘,并且电缆长度对应于整个敷设间距,则耦合损耗会消失。在我们的研究中,我们比较了两种电缆模型在垂直于其纵轴的磁场中的磁化损耗。这些模型的总体几何形状是相同的:每个模型都由三个4 mm宽的胶带组成,这些胶带以50 mm的间距以8 mm直径的圆形芯单层放置。电缆长度设计为可达到两个完整的胶带间距。在第一根电缆(参考电缆)中,使用了无条纹的胶带;第二根电缆是用类似的胶带制成的,但通过激光加工被分成五根细丝。对于没有端接以及具有低电阻端接的电缆,测量交流损耗。后一种配置模拟了磁体绕组中的条件。我们的实验清楚地表明了在未耦合的灯丝状态下预期的损耗行为。尤其是在幅度为0.1 T的交流电场下,横纹胶带在电缆中的损耗比参考电缆低五倍。数值模型解释了在整个交流场中实验观察到的电缆行为。

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