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Measurements of the stability margin of a Nb/sub 3/Sn cable-in-conduit conductor

机译:Nb / sub 3 / Sn导管内电缆导体的稳定裕度的测量

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The stability margin of a single quadruplex of Nb/sub 3/Sn/Cu composite strand enclosed in a round stainless-steel tube was measured by using an inductive heater whose duration time is around 0.1 ms. The strand had a diameter of 1.04 mm and a copper fraction of 69%. The fraction of helium in the cable space was 34.5%. Measurements of the stability margin were carried out by varying the transport current, external magnetic field, and initial helium pressure. The helium flow rate was always zero. The limiting transport current, which is the boundary value between the upper and lower stable regions similar to NbTi cable-in-conduit conductors, was observed. The limiting-current density over the cable space inside the conduit at 12 T was 100 A/mm/sup 2/, corresponding to 58% of the critical current. This value does not depend on the initial helium pressure in the range of 3-12 atm. Observed upper and the lower stability margins were more than 200 mJ/cm/sup 3/ strand and less than 60 mJ/cm/sup 3/ strand, respectively. The heat transfer coefficient in the cable-in-conduit conductor is estimated to be around 0.1 W/cm/sup 2/K.
机译:通过使用持续时间约为0.1 ms的感应加热器,测量了封闭在圆形不锈钢管中的Nb / sub 3 / Sn / Cu复合单股单线复合体的稳定性裕度。股线的直径为1.04mm,铜含量为69%。电缆空间中的氦气比例为34.5%。通过改变传输电流,外部磁场和初始氦气压力来进行稳定性裕度的测量。氦气流量始终为零。观察到极限传输电流,该电流是类似于NbTi导管内导体的上下稳定区域之间的边界值。在12 T时,导管内部电缆空间上的极限电流密度为100 A / mm / sup 2 /,相当于临界电流的58%。该值不取决于3-12 atm范围内的初始氦气压力。观察到的上部和下部稳定裕度分别大于200 mJ / cm / sup 3 /股和小于60 mJ / cm / sup 3 /股。电缆导管中的传热系数估计约为0.1 W / cm / sup 2 / K。

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