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Reduction of AC losses applying novel resistive interfilamentary carbonate barriers in multifilamentary Bi(2223) tapes

机译:在多丝Bi(2223)胶带中应用新型电阻丝间碳酸盐屏障来降低交流电损耗

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摘要

Hysteresis losses and coupling losses, a main component of the AC losses in Bi(2223) tapes, can effectively be reduced by enhancing the resistivity of the matrix material between the filaments and applying a filament twist. Since through alloying the sheath, as using AgAu(8 wt.%), the resistivity can only be raised by a factor < 10 (77 K), a new conductor configuration with a quite novel composite matrix having resistive SrCO3 barriers inside the Ag matrix between the filaments was developed. These new barriers, a cheap and commercial material, withstand the tape annealing, do not react with the superconductor, sinter dense and have a good bonding to Ag. Applying two different preparation techniques for 19 filament prototype tapes, critical current densities up to 20.7 kA cm(-2) were achieved. We report on tape preparation, the effect on the phase texture and the superconducting properties of such barrier tapes. (C) 1998 Elsevier Science B.V. All rights reserved. [References: 9]
机译:磁滞损耗和耦合损耗是Bi(2223)胶带中AC损耗的主要组成部分,可以通过提高细丝之间的基体材料的电阻率并施加细丝扭曲来有效地降低。由于通过对护套进行合金化处理(如使用AgAu(8 wt。%)),电阻率只能提高到<10(77 K)倍,这是一种新的导体结构,其结构非常新颖,在Ag基体内部具有电阻性SrCO3势垒的复合基体细丝之间被显影。这些新型的壁垒是一种廉价且商业化的材料,可经受带式退火,不会与超导体发生反应,烧结致密并且与Ag的粘结性良好。将两种不同的制备技术应用于19个灯丝原型带,可实现高达20.7 kA cm(-2)的临界电流密度。我们报告了胶带的制备,对此类阻隔带的相织构和超导性能的影响。 (C)1998 Elsevier Science B.V.保留所有权利。 [参考:9]

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