Reduction of Gas Bubbles and Improved Critical Current Density in Bi-2212 Round Wire by Swaging

Bi-2212 round wire is made by the powder-in-tube technique. An unavoidable property of powder-in-tube conductors is that there is about 30% void space in the as-drawn wire. We have recently shown that the gas present in the as-drawn Bi-2212 wire agglomerates into large bubbles and that they are pres...

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Veröffentlicht in:IEEE transactions on applied superconductivity 2013-06, Vol.23 (3), p.6400206-6400206
Hauptverfasser: Jianyi Jiang, Hanping Miao, Yibing Huang, Seung Hong, Parrell, J. A., Scheuerlein, C., Di Michiel, M., Ghosh, A. K., Trociewitz, U. P., Hellstrom, E. E., Larbalestier, D. C.
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Sprache:eng
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Zusammenfassung:Bi-2212 round wire is made by the powder-in-tube technique. An unavoidable property of powder-in-tube conductors is that there is about 30% void space in the as-drawn wire. We have recently shown that the gas present in the as-drawn Bi-2212 wire agglomerates into large bubbles and that they are presently the most deleterious current-limiting mechanism. By densifying short 2212 wires before reaction through cold isostatic pressing, the void space was almost removed and the gas bubble density was reduced significantly, resulting in a doubled engineering critical current density ( J E ) of 810 A/mm 2 at 5 T, 4.2 K. Here we report on densifying Bi-2212 wire by swaging, which increased J E (4.2 K, 5 T) from 486 A/mm 2 for as-drawn wire to 808 A/mm 2 for swaged wire. This result further confirms that enhancing the filament packing density is of great importance for making major J E improvements in this round-wire magnet conductor.
ISSN:1051-8223
1558-2515
DOI:10.1109/TASC.2013.2237873