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10 kA Joints for HTS Roebel Cables

Future high temperature superconductor (HTS) high field magnets using multitape HTS cables need 10-kA low-resistance connections. The connections are needed between the poles of the magnets and at the terminals in a wide-operating temperature range, from 1.9-85 K. The EuCARD-WP10 Future Magnets coll...

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Autores principales: Murtomaki, Jaakko Samuel, Kirby, Glyn, van Nugteren, Jeroen, Contat, Pierre-Antoine, Sacristan-de-Frutos, Oscar, Fleiter, Jerome, Pincot, Francois-Olivier, de Rijk, Gijs, Rossi, Lucio, Ruuskanen, Janne, Stenvall, Antti, Wolf, Felix J
Lenguaje:eng
Publicado: 2018
Materias:
Acceso en línea:https://dx.doi.org/10.1109/TASC.2018.2804951
http://cds.cern.ch/record/2676576
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author Murtomaki, Jaakko Samuel
Kirby, Glyn
van Nugteren, Jeroen
Contat, Pierre-Antoine
Sacristan-de-Frutos, Oscar
Fleiter, Jerome
Pincot, Francois-Olivier
de Rijk, Gijs
Rossi, Lucio
Ruuskanen, Janne
Stenvall, Antti
Wolf, Felix J
author_facet Murtomaki, Jaakko Samuel
Kirby, Glyn
van Nugteren, Jeroen
Contat, Pierre-Antoine
Sacristan-de-Frutos, Oscar
Fleiter, Jerome
Pincot, Francois-Olivier
de Rijk, Gijs
Rossi, Lucio
Ruuskanen, Janne
Stenvall, Antti
Wolf, Felix J
author_sort Murtomaki, Jaakko Samuel
collection CERN
description Future high temperature superconductor (HTS) high field magnets using multitape HTS cables need 10-kA low-resistance connections. The connections are needed between the poles of the magnets and at the terminals in a wide-operating temperature range, from 1.9-85 K. The EuCARD-WP10 Future Magnets collaboration aims at testing HTS-based Roebel cables in an accelerator magnet. Usually, low temperature superconductor (LTS) cables are jointed inside a relatively short soldered block. Powering tests at CERN have highlighted excess heating of a joint following classical LTS joint design. The HTS Roebel cables are assembled from REBCO-coated conductor tapes in a transposed configuration. Due to this, the tapes surface the cable at an angle with the cable axis. A low-resistance joint requires a sufficiently large interface area for each tape. Within one twist pitch length, each tape is located at the surface of the cable over a relatively small non-constant area. This geometry prevents making a well-controlled joint in a compact length along the cable. This paper presents a compact joint configuration for the Roebel cable overcoming these practical challenges. A new joint called fin-block is designed. The joint resistance is estimated computationally. Finally, the test results as a function of current and temperature are presented.
id oai-inspirehep.net-1698367
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2018
record_format invenio
spelling oai-inspirehep.net-16983672019-09-30T06:29:59Zdoi:10.1109/TASC.2018.2804951http://cds.cern.ch/record/2676576engMurtomaki, Jaakko SamuelKirby, Glynvan Nugteren, JeroenContat, Pierre-AntoineSacristan-de-Frutos, OscarFleiter, JeromePincot, Francois-Olivierde Rijk, GijsRossi, LucioRuuskanen, JanneStenvall, AnttiWolf, Felix J10 kA Joints for HTS Roebel CablesAccelerators and Storage RingsFuture high temperature superconductor (HTS) high field magnets using multitape HTS cables need 10-kA low-resistance connections. The connections are needed between the poles of the magnets and at the terminals in a wide-operating temperature range, from 1.9-85 K. The EuCARD-WP10 Future Magnets collaboration aims at testing HTS-based Roebel cables in an accelerator magnet. Usually, low temperature superconductor (LTS) cables are jointed inside a relatively short soldered block. Powering tests at CERN have highlighted excess heating of a joint following classical LTS joint design. The HTS Roebel cables are assembled from REBCO-coated conductor tapes in a transposed configuration. Due to this, the tapes surface the cable at an angle with the cable axis. A low-resistance joint requires a sufficiently large interface area for each tape. Within one twist pitch length, each tape is located at the surface of the cable over a relatively small non-constant area. This geometry prevents making a well-controlled joint in a compact length along the cable. This paper presents a compact joint configuration for the Roebel cable overcoming these practical challenges. A new joint called fin-block is designed. The joint resistance is estimated computationally. Finally, the test results as a function of current and temperature are presented.oai:inspirehep.net:16983672018
spellingShingle Accelerators and Storage Rings
Murtomaki, Jaakko Samuel
Kirby, Glyn
van Nugteren, Jeroen
Contat, Pierre-Antoine
Sacristan-de-Frutos, Oscar
Fleiter, Jerome
Pincot, Francois-Olivier
de Rijk, Gijs
Rossi, Lucio
Ruuskanen, Janne
Stenvall, Antti
Wolf, Felix J
10 kA Joints for HTS Roebel Cables
title 10 kA Joints for HTS Roebel Cables
title_full 10 kA Joints for HTS Roebel Cables
title_fullStr 10 kA Joints for HTS Roebel Cables
title_full_unstemmed 10 kA Joints for HTS Roebel Cables
title_short 10 kA Joints for HTS Roebel Cables
title_sort 10 ka joints for hts roebel cables
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1109/TASC.2018.2804951
http://cds.cern.ch/record/2676576
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