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Current $MgB_{2}$ wire performance and their industrial development

Although just recently discovered as a superconductor, Magnesium Diboride has already demonstrated its clear potential for an effective use in a variety of applications. With its critical temperature of about 40 K, MgBB2 gives the opportunity to operate devices at cryogenic temperatures of the order...

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Detalles Bibliográficos
Autores principales: Grasso, G, Brisigotti, S, Pietranera, D, Tumino, A, Berta, S, Penco, R, Demencik, E, Braccini, V, Malagoli, A, Vignolo, M, Tropeano, M, Fanciulli, C, Putti, M, Ferdeghini, C
Lenguaje:eng
Publicado: CERN 2009
Materias:
Acceso en línea:https://dx.doi.org/10.5170/CERN-2009-001.78
http://cds.cern.ch/record/1163719
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author Grasso, G
Brisigotti, S
Pietranera, D
Tumino, A
Berta, S
Penco, R
Demencik, E
Braccini, V
Malagoli, A
Vignolo, M
Tropeano, M
Fanciulli, C
Putti, M
Ferdeghini, C
author_facet Grasso, G
Brisigotti, S
Pietranera, D
Tumino, A
Berta, S
Penco, R
Demencik, E
Braccini, V
Malagoli, A
Vignolo, M
Tropeano, M
Fanciulli, C
Putti, M
Ferdeghini, C
author_sort Grasso, G
collection CERN
description Although just recently discovered as a superconductor, Magnesium Diboride has already demonstrated its clear potential for an effective use in a variety of applications. With its critical temperature of about 40 K, MgBB2 gives the opportunity to operate devices at cryogenic temperatures of the order of 20 K, allowing for the use of alternative, cost effective, and simpler technologies than liquid helium. Suitable processes for long lengths wire manufacturing have been demonstrated in the recent years. This work will focus on the preparation of MgB2B based superconducting wires by the Powder-In-Tube method, using the so-called ’ex-situ’ process. The main physical and structural characteristics of these wires will be finally reported and briefly discussed.
id cern-1163719
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2009
publisher CERN
record_format invenio
spelling cern-11637192019-09-30T06:29:59Zdoi:10.5170/CERN-2009-001.78http://cds.cern.ch/record/1163719engGrasso, GBrisigotti, SPietranera, DTumino, ABerta, SPenco, RDemencik, EBraccini, VMalagoli, AVignolo, MTropeano, MFanciulli, CPutti, MFerdeghini, CCurrent $MgB_{2}$ wire performance and their industrial developmentParticle Physics - ExperimentAlthough just recently discovered as a superconductor, Magnesium Diboride has already demonstrated its clear potential for an effective use in a variety of applications. With its critical temperature of about 40 K, MgBB2 gives the opportunity to operate devices at cryogenic temperatures of the order of 20 K, allowing for the use of alternative, cost effective, and simpler technologies than liquid helium. Suitable processes for long lengths wire manufacturing have been demonstrated in the recent years. This work will focus on the preparation of MgB2B based superconducting wires by the Powder-In-Tube method, using the so-called ’ex-situ’ process. The main physical and structural characteristics of these wires will be finally reported and briefly discussed.CERNoai:cds.cern.ch:11637192009
spellingShingle Particle Physics - Experiment
Grasso, G
Brisigotti, S
Pietranera, D
Tumino, A
Berta, S
Penco, R
Demencik, E
Braccini, V
Malagoli, A
Vignolo, M
Tropeano, M
Fanciulli, C
Putti, M
Ferdeghini, C
Current $MgB_{2}$ wire performance and their industrial development
title Current $MgB_{2}$ wire performance and their industrial development
title_full Current $MgB_{2}$ wire performance and their industrial development
title_fullStr Current $MgB_{2}$ wire performance and their industrial development
title_full_unstemmed Current $MgB_{2}$ wire performance and their industrial development
title_short Current $MgB_{2}$ wire performance and their industrial development
title_sort current $mgb_{2}$ wire performance and their industrial development
topic Particle Physics - Experiment
url https://dx.doi.org/10.5170/CERN-2009-001.78
http://cds.cern.ch/record/1163719
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