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High critical current Ag and Ag alloy sheathed multifilament Bi-2223 tapes

机译:高临界电流Ag和Ag合金护套复丝Bi-2223胶带

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Ag sheathed (BiPb/sub 2/)Sr/sub 2/Ca/sub 2/Cu/sub 3/O/sub 10/ (Bi-2223) multifilament tapes with filament numbers of 19, 37, 55, and 85 were produced by the powder-in-tube method. Enhanced tape performance has been achieved by optimisation of the processing conditions. Key factors are addressed that include elimination of the 2212 phase, improving grain connectivity through reducing the 2201 phase and alkaline earth cuprate phases, increasing superconductor core density as well as enhancing current contribution from edge filaments. A high J/sub c/ of 50 kA/cm/sup 2/ with an I/sub c/ of 42 A has been achieved reproducibly in 19 filament tapes with dimensions of 0.16/spl times/2.8 mm/sup 2/ and silver/superconductor ratios of 4.4:1. By reducing the silver ratio, a J/sub e/ of 14 kA/cm/sup 2/ with an I/sub c/ of 48 A has been obtained in 55 filament tapes and an I/sub c/ of 84 A has been obtained in a tape with dimensions of 4/spl times/0.23 mm/sup 2/. A record J/sub c/ of more than 30 kA/cm/sup 2/ with an I/sub c/ of 32 A was achieved in 250 metres long standard tapes. A 1250 m long pure Ag sheathed tape and an 1100 m long Ag alloyed tape have been produced with a J/sub c/ of higher than 25 kA/cm/sup 2/ by using optimised process parameters.
机译:制备了Ag包覆的(BiPb / sub 2 /)Sr / sub 2 / Ca / sub 2 / Cu / sub 3 / O / sub 10 /(Bi-2223)复丝带,其细丝编号为19、37、55和85通过管中粉末法。通过优化加工条件,可以提高胶带性能。解决的关键因素包括消除2212相,通过减少2201相和碱土金属铜酸盐相来改善晶粒连通性,增加超导体芯密度以及增强边缘细丝的电流贡献。在尺寸为0.16 / spl次/2.8 mm / sup 2 /的19条细丝带和银中,可再现地获得了50 kA / cm / sup 2 /的高J / sub c /和42 A的I / sub c /。 /超导比为4.4:1。通过降低银比,在55条细丝带中获得的J / sub e /为14 kA / cm / sup 2 /,I / sub c /为48 A,I / sub c /为84A。用尺寸为4 / spl倍/0.23 mm / sup 2 /的胶带获得。在250米长的标准磁带中,记录的J / sub c /超过30 kA / cm / sup 2 /,I / sub c /达到32A。通过使用优化的工艺参数,已生产出1250 m长的纯银护套带和1100 m长的银合金带,其J / sub c /高于25 kA / cm / sup 2 /。

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