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首页> 外文期刊>Cryogenics >Superconducting properties of internal-tin route Nb_3Sn wires with radially arranged filaments Development that realizes high J_c and low hysteresis loss
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Superconducting properties of internal-tin route Nb_3Sn wires with radially arranged filaments Development that realizes high J_c and low hysteresis loss

机译:锡丝径向排列的内锡Nb_3Sn导线的超导性能实现高J_c和低磁滞损耗的开发

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An internal-tin route NbaSn superconducting wire that has both remarkably low hysteresis loss (Q_h) and high critical current density (j_c) was developed according to a new design idea. The wire was constructed by arranging the filaments in a radial layout, enlarging the outer filaments along the radial direction, narrowing the filament spacing in the radial direction intentionally and enlarging the filament spacing in tangential direction. Thus, the electromagnetic coupling among the filaments in tangential direction due to the bridging and/or proximity effect was suppressed without decreasing the volume fraction of Nb. As a result, excellent properties such as j_c(12 T) = 1.15 x 10~3 A/mm~2 and Q_h, = 301 mJ/cm~3 (for 1 cycle of B = + - 3 T) were obtained. We also evaluated the transition temperature (T_c) and upper critical field (B_(c2)) of the wire. The values for T_c and B_(c2) were 17.3 K and 24.1 T, respectively, which were much better than those of usual internal-tin route wires. Moreover, electron probe micro-analyses confirmed that the good T_c and B_(c2 )were the result of the qualitative improvement of the Nb3Sn compound based on the effects of arranging the Nb filaments radially, increasing the ratio of Sn-to-Nb and shortening the diffusion length for Sn, This wire is promising for use with conduction-cooled high-field magnets, in which there is a need to decrease the load of the cryocooler, and also for the strands of fusion coils.
机译:根据一种新的设计思想,开发了一种具有极低的磁滞损耗(Q_h)和高的临界电流密度(j_c)的内部锡路线NbaSn超导线。通过以径向布局布置细丝,沿径向扩大外部细丝,有意使径向上的细丝间距变窄以及沿切线方向增大细丝间距来构造线材。因此,在不减小Nb的体积分数的情况下,抑制了由于桥接和/或接近效应而引起的细丝之间在切线方向上的电磁耦合。结果,获得了优异的性能,例如j_c(12 T)= 1.15×10 3 A / mm-2和Q_h = 301mJ / cm 3(对于1个周期,B = + /-3T)。我们还评估了焊丝的转变温度(T_c)和上临界场(B_(c2))。 T_c和B_(c2)的值分别为17.3 K和24.1 T,这比普通的内部锡路由线要好得多。此外,电子探针显微分析证实,良好的T_c和B_(c2)是Nb3Sn化合物在径向排列Nb细丝,增加Sn与Nb的比例并缩短其效果的基础上定性改善的结果。这根线有望用于传导冷却的高磁场磁体,其中需要降低低温冷却器的负荷,也需要用于熔融线圈的股线。

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