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Processing of Long-Length YBCO Coated Conductors Based on Stainless Steel Tapes

机译:基于不锈钢带的长型YBCO涂层导体的加工

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Recent progress is reported in the development of long lengths (up to 100 m) of YBCO coated conductors with good mechanical stability and improved critical current homogeneity. A non-magnetic CrNi stainless steel tape, 0.1 mm thick, is employed as a substrate tape. Prior to deposition, the tape is coated with yttria stabilized zirconia in the form of a bi-axially textured buffer layer, using a novel “alternating beam assisted deposition” technique. After deposition of a ceria cap layer onto the buffer, YBCO films are deposited employing a high-rate pulsed laser deposition method that allows higher critical current densities and incurs a lower YBCO loss ( $sim$10%) than other deposition techniques. The last processing step consists of coating the with a thin layer of silver or gold and a 2–40 $mu{rm m}$ thick copper shunt layer. In 40 m long tapes with a 1 $mu{rm m}$ thick YBCO film (at 77 K and zero external field), critical current, $I_{c}$ , up to 235 A per cm-width were obtained. Higher critical currents, up to 574 A per cm, were achieved in short 0.2–7 m sections corresponding to current densities, $J_{c}$, of up to 4.4 ${rm MA/cm}^{2}$. The critical current homogeneity and performance of our improved coated conductors under applied temperature cycling, multiple quench-recovery cycles, and repeated bending are reported.
机译:据报道,最近的进展是开发了长距离(最长100 m)的YBCO涂层导体,具有良好的机械稳定性和改善的临界电流均匀性。使用0.1毫米厚的非磁性CrNi不锈钢带作为基材带。在沉积之前,使用一种新颖的“交替束辅助沉积”技术,以双轴织构缓冲层的形式在氧化带上涂覆氧化钇稳定的氧化锆。在将二氧化铈覆盖层沉积到缓冲液上之后,采用高速脉冲激光沉积方法沉积YBCO膜,该方法允许更高的临界电流密度,并且产生比其他沉积技术更低的YBCO损耗(sim $ 10%)。最后的处理步骤包括在薄层上涂覆一层银或金,并在其上覆盖2-40微米的铜分流层。在具有1μmrmm$厚的YBCO膜(在77 K和零外场的情况下)的40 m长的磁带中,获得的临界电流$ I {c} $高达每厘米宽度235A。在短的0.2-7 m区域内,对应于电流密度$ J_ {c} $达到4.4 $ {rm MA / cm} ^ {2} $的短电流,获得了高达574 A / cm的更高临界电流。报告了在施加的温度循环,多次淬火-恢复循环和反复弯曲下,我们改进的涂层导体的临界电流均匀性和性能。

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