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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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Autores principales: Jiang, J, Miao, H, Huang, Y, Hong, S, Parrell, J, Scheuerlein, C, Di Michiel, M, Ghosh, A, Trociewitz, U, Hellstrom, E, Larbalestier, D
Lenguaje:eng
Publicado: 2013
Materias:
Acceso en línea:https://dx.doi.org/10.1109/TASC.2013.2237873
http://cds.cern.ch/record/1516081
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author Jiang, J
Miao, H
Huang, Y
Hong, S
Parrell, J
Scheuerlein, C
Di Michiel, M
Ghosh, A
Trociewitz, U
Hellstrom, E
Larbalestier, D
author_facet Jiang, J
Miao, H
Huang, Y
Hong, S
Parrell, J
Scheuerlein, C
Di Michiel, M
Ghosh, A
Trociewitz, U
Hellstrom, E
Larbalestier, D
author_sort Jiang, J
collection CERN
description 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 (CIPping), the void space was almost removed and the gas bubble density was reduced significantly, resulting in a doubled engineering critical current density (JE) of 810 A/mm2 at 5 T, 4.2 K. Here we report on densifying Bi-2212 wire by swaging, which increased JE (4.2 K, 5 T) from 486 A/mm2 for as-drawn wire to 808 A/mm2 for swaged wire. This result further confirms that enhancing the filament packing density is of great importance for making major JE improvement in this round-wire magnet conductor.
id cern-1516081
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2013
record_format invenio
spelling cern-15160812019-09-30T06:29:59Zdoi:10.1109/TASC.2013.2237873http://cds.cern.ch/record/1516081engJiang, JMiao, HHuang, YHong, SParrell, JScheuerlein, CDi Michiel, MGhosh, ATrociewitz, UHellstrom, ELarbalestier, DReduction of Gas Bubbles and Improved Critical Current Density in Bi-2212 Round Wire by SwagingAccelerators and Storage RingsBi-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 (CIPping), the void space was almost removed and the gas bubble density was reduced significantly, resulting in a doubled engineering critical current density (JE) of 810 A/mm2 at 5 T, 4.2 K. Here we report on densifying Bi-2212 wire by swaging, which increased JE (4.2 K, 5 T) from 486 A/mm2 for as-drawn wire to 808 A/mm2 for swaged wire. This result further confirms that enhancing the filament packing density is of great importance for making major JE improvement in this round-wire magnet conductor.CERN-ATS-2013-030oai:cds.cern.ch:15160812013-02-14
spellingShingle Accelerators and Storage Rings
Jiang, J
Miao, H
Huang, Y
Hong, S
Parrell, J
Scheuerlein, C
Di Michiel, M
Ghosh, A
Trociewitz, U
Hellstrom, E
Larbalestier, D
Reduction of Gas Bubbles and Improved Critical Current Density in Bi-2212 Round Wire by Swaging
title Reduction of Gas Bubbles and Improved Critical Current Density in Bi-2212 Round Wire by Swaging
title_full Reduction of Gas Bubbles and Improved Critical Current Density in Bi-2212 Round Wire by Swaging
title_fullStr Reduction of Gas Bubbles and Improved Critical Current Density in Bi-2212 Round Wire by Swaging
title_full_unstemmed Reduction of Gas Bubbles and Improved Critical Current Density in Bi-2212 Round Wire by Swaging
title_short Reduction of Gas Bubbles and Improved Critical Current Density in Bi-2212 Round Wire by Swaging
title_sort reduction of gas bubbles and improved critical current density in bi-2212 round wire by swaging
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1109/TASC.2013.2237873
http://cds.cern.ch/record/1516081
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