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首页> 外文期刊>Physica, C. Superconductivity and its applications >AC LOSSES OF AG-SHEATHED (BI, PB)(2)SR2CA2CU3OX MONOFILAMENTARY AND MULTIFILAMENTARY TAPES
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AC LOSSES OF AG-SHEATHED (BI, PB)(2)SR2CA2CU3OX MONOFILAMENTARY AND MULTIFILAMENTARY TAPES

机译:AG护套(BI,PB)(2)SR2CA2CU3OX单丝和复丝丝的交流损耗

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The AC losses are investigated at 77 K on the Ag-sheathed (Bi, Pb)(2)Sr2Ca2Cu3Ox monofilamentary tape and multifilamentary tapes with filament numbers equal to 7, 19, 37 and 61, through an AC transport method under self-fields and an AC magnetic method under longitudinal fields. Although the main contribution to the AC losses around a commercial frequency of 50 Hz comes from the hysteresis loss independent of the measuring methods, the AC transport losses for the monofilamentary tape are larger than the AC magnetic losses by about one order of magnitude. Such a discrepancy is explained by a large aspect ratio of the superconductor core, which lowers only the magnetic losses. The superconductor subdivision in the multifilamentary tapes causes no notable influence on the AC transport losses ascribed to the hysteresis loss. This is compared with the result for the AC magnetic losses that the subdivision suppresses the contribution of the hysteresis loss while enhancing that of the eddy current loss. The density distribution of the AC transport losses obtained from numerical calculations based on a critical state model shows a resemblance between the monofilamentary tape and the multifilamentary tapes, which conforms to the experimental result for the AC transport losses. [References: 11]
机译:在自电场和磁场作用下,通过交流输运法,研究了在77 K的Ag鞘(Bi,Pb)(2)Sr2Ca2Cu3Ox单丝带和细丝数等于7、19、37和61的复丝带的交流损耗。纵向磁场下的交流磁方法。尽管对商业频率50 Hz左右的AC损耗的主要贡献来自与测量方法无关的磁滞损耗,但是单丝带的AC传输损耗比AC磁损耗大大约一个数量级。这种差异可以通过超导体芯的高长宽比来解释,这仅降低了磁损耗。复丝带中的超导体细分对归因于磁滞损耗的交流输运损耗没有明显影响。将该结果与交流磁损耗的结果进行比较,该细分可抑制磁滞损耗的贡献,同时可增强涡流损耗。通过基于临界状态模型的数值计算获得的交流输运损耗的密度分布显示出单丝带和复丝带之间的相似之处,这与交流输运损耗的实验结果一致。 [参考:11]

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