低温工学
Online ISSN : 1880-0408
Print ISSN : 0389-2441
ISSN-L : 0389-2441
Cu-Ni-Mn合金を複合化した超極細多芯交流用Nb-Ti超電導線材
臨界電流密度と安定化銅の残留抵抗比
宮下 克己酒井 修二鎌田 圀尚田中 浩樹
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1994 年 29 巻 6 号 p. 238-244

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Critical current density and stability of sub-micron filament Nb-Ti superconducting wires with Cu-Ni-Mn alloy matrix are described. Characteristics of critical current density Jc depend on filament diameter df, kinds of matrix and ratio of filament spacing dn to df. In the case of large dn/df(=0.65-1) wires, increasing Jc with decreasing df is slight due to low pinning force. Residual Resistance Ratio (RRR) of the wires which were heat treated (100-250°C×1hour) at final size increased to 70-80. These values are three times those of the as drawn wires. The final heat treatment at more than 300°C degraded RRR and Jc, because of Ni diffusion. AC (50Hz) quench current at high field (>2T) of the secondary twisted cable with 36 strands (copper ratio 1.9) is higher than DC critical current of the secondary twisted cable.
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