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Improvement of critical current density and residual resistivity on jelly-roll processed Nb/sub 3/Al superconducting wires

机译:胶卷加工的Nb / sub 3 / Al超导线材的临界电流密度和残余电阻率的改善

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The residual resistivity of copper stabilizer (/spl rho/), is deteriorated by the diffusion of chromium plated on the strand surface during heating of Nb/sub 3/Al strands. To improve this degradation, the copper stabilizer has been located on the center of the cross-section of the strand rather than near the strand surface. As a result, /spl rho/ is improved to one-sixth of previous value achieving 1.6/spl times/10/sup -10/ /spl Omega/m in a laboratory scale strand. The critical current density (J/sub c/) of this strand was 715 A/mm/sup 2/ at 12 T. This technique was applied to prototype strands to be used in a Nb/sub 3/Al Insert Coil developed in ITER R&D programme resulting in a /spl rho/ of 1.5/spl times/10/sup -10/ /spl Omega/m, which meets ITER specification. In addition, the improvement of J/sub c/ was also studied by two-stage reaction including a continuous heating procedure, which resulted in a J/sub c/ of 1130 A/mm/sup 2/ at 12 T and good longitudinal uniformity.
机译:铜稳定剂(/ spl rho /)的残余电阻率由于在Nb / sub 3 / Al股线加热过程中镀在股线表面的铬扩散而恶化。为了改善这种降解,铜稳定剂位于绞线横截面的中心,而不是靠近绞线表面。结果,将/ spl rho /提高到先前值的六分之一,在实验室规模的链中达到1.6 / spl次/ 10 / sup -10 / / splΩ/ m。该绞线的临界电流密度(J / sub c /)在12 T时为715 A / mm / sup 2 /。此技术应用于在ITER开发的Nb / sub 3 / Al插入线圈中使用的原型绞线研发程序得出的/ spl rho /为1.5 / spl乘以/ 10 / sup -10 / / spl符合欧米茄/ m,符合ITER规范。此外,还通过包括连续加热程序在内的两步反应研究了J / sub c /的提高,该反应在12 T时产生的J / sub c /为1130 A / mm / sup 2 /且纵向均匀性良好。

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