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Manufacturing and testing of AMaSED-2: a no-insulation high-temperature superconducting demonstrator coil for the space spectrometer ARCOS

The Astroparticle Research Compact Orbital Spectrometer (ARCOS) magnet is a 12-coil toroidal magnet for a proposed next-generation magnetic spectrometer in space. AMaSED-2 is a small-scale non-flight demonstrator coil for the ARCOS magnet. AMaSED-2 consists of two individually built no-insulation hi...

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Autores principales: Dam, Magnus, Burger, William Jerome, Carpentiero, Rita, Chesta, Enrico, Iuppa, Roberto, Kirby, Glyn, de Rijk, Gijs, Rossi, Lucio
Lenguaje:eng
Publicado: 2023
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1361-6668/aca6ac
http://cds.cern.ch/record/2845028
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author Dam, Magnus
Burger, William Jerome
Carpentiero, Rita
Chesta, Enrico
Iuppa, Roberto
Kirby, Glyn
de Rijk, Gijs
Rossi, Lucio
author_facet Dam, Magnus
Burger, William Jerome
Carpentiero, Rita
Chesta, Enrico
Iuppa, Roberto
Kirby, Glyn
de Rijk, Gijs
Rossi, Lucio
author_sort Dam, Magnus
collection CERN
description The Astroparticle Research Compact Orbital Spectrometer (ARCOS) magnet is a 12-coil toroidal magnet for a proposed next-generation magnetic spectrometer in space. AMaSED-2 is a small-scale non-flight demonstrator coil for the ARCOS magnet. AMaSED-2 consists of two individually built no-insulation high-temperature superconducting pancake coils with racetrack-like shapes. The two pancake coils are contained in a total of of wide SuperPower REBCO HTS tape. Copper bands functioning as current leads and layer jump surround the winding blocks. An aluminum structure mechanically supports the coil assemblies. AMaSED-2 was manufactured and tested at CERN. The coil was tested in cryogenic helium gas at various temperatures between and by measuring the center magnetic flux density while varying the operating current. We employ a model for no-insulation coils and identify for each temperature the center magnet constant and magnet charging time constant as system parameters. We also determine the radial resistance, peak magnet constant, magnet critical current, and maximum achieved magnetic flux densities. Central magnetic flux densities up to were measured, corresponding to a peak magnetic flux density on the coil of . The design and characterization of AMaSED-2 provides a basis for future magnet development of a flight model.
id cern-2845028
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2023
record_format invenio
spelling cern-28450282023-06-13T15:02:03Zdoi:10.1088/1361-6668/aca6achttp://cds.cern.ch/record/2845028engDam, MagnusBurger, William JeromeCarpentiero, RitaChesta, EnricoIuppa, RobertoKirby, Glynde Rijk, GijsRossi, LucioManufacturing and testing of AMaSED-2: a no-insulation high-temperature superconducting demonstrator coil for the space spectrometer ARCOSAccelerators and Storage RingsThe Astroparticle Research Compact Orbital Spectrometer (ARCOS) magnet is a 12-coil toroidal magnet for a proposed next-generation magnetic spectrometer in space. AMaSED-2 is a small-scale non-flight demonstrator coil for the ARCOS magnet. AMaSED-2 consists of two individually built no-insulation high-temperature superconducting pancake coils with racetrack-like shapes. The two pancake coils are contained in a total of of wide SuperPower REBCO HTS tape. Copper bands functioning as current leads and layer jump surround the winding blocks. An aluminum structure mechanically supports the coil assemblies. AMaSED-2 was manufactured and tested at CERN. The coil was tested in cryogenic helium gas at various temperatures between and by measuring the center magnetic flux density while varying the operating current. We employ a model for no-insulation coils and identify for each temperature the center magnet constant and magnet charging time constant as system parameters. We also determine the radial resistance, peak magnet constant, magnet critical current, and maximum achieved magnetic flux densities. Central magnetic flux densities up to were measured, corresponding to a peak magnetic flux density on the coil of . The design and characterization of AMaSED-2 provides a basis for future magnet development of a flight model.oai:cds.cern.ch:28450282023
spellingShingle Accelerators and Storage Rings
Dam, Magnus
Burger, William Jerome
Carpentiero, Rita
Chesta, Enrico
Iuppa, Roberto
Kirby, Glyn
de Rijk, Gijs
Rossi, Lucio
Manufacturing and testing of AMaSED-2: a no-insulation high-temperature superconducting demonstrator coil for the space spectrometer ARCOS
title Manufacturing and testing of AMaSED-2: a no-insulation high-temperature superconducting demonstrator coil for the space spectrometer ARCOS
title_full Manufacturing and testing of AMaSED-2: a no-insulation high-temperature superconducting demonstrator coil for the space spectrometer ARCOS
title_fullStr Manufacturing and testing of AMaSED-2: a no-insulation high-temperature superconducting demonstrator coil for the space spectrometer ARCOS
title_full_unstemmed Manufacturing and testing of AMaSED-2: a no-insulation high-temperature superconducting demonstrator coil for the space spectrometer ARCOS
title_short Manufacturing and testing of AMaSED-2: a no-insulation high-temperature superconducting demonstrator coil for the space spectrometer ARCOS
title_sort manufacturing and testing of amased-2: a no-insulation high-temperature superconducting demonstrator coil for the space spectrometer arcos
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1088/1361-6668/aca6ac
http://cds.cern.ch/record/2845028
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