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Qualification of structural stainless steel products for the ITER correction coil cases

The ITER Correction Coils (CCs) consist of three sets of six coils, Bottom (BCC), Side (SCC) and Top Correction Coils (TCC), respectively. The CCs rely on 10 kA NbTi cable-in-conduit conductor. Each CC winding pack is enclosed inside a 20 mm thick 316LN stainless steel case, providing structural rei...

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Autores principales: Sgobba, Stefano, Dalin, Jean-Michel, Langeslag, Stefanie Agnes Elisabeth, Aviles Santillana, Ignacio, Libeyre, Paul, Simon, Fabrice, Wei, Jing, Chai, Zhiyong, Li, Laifeng
Lenguaje:eng
Publicado: 2017
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.fusengdes.2017.05.139
http://cds.cern.ch/record/2318925
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author Sgobba, Stefano
Dalin, Jean-Michel
Langeslag, Stefanie Agnes Elisabeth
Aviles Santillana, Ignacio
Libeyre, Paul
Simon, Fabrice
Wei, Jing
Chai, Zhiyong
Li, Laifeng
author_facet Sgobba, Stefano
Dalin, Jean-Michel
Langeslag, Stefanie Agnes Elisabeth
Aviles Santillana, Ignacio
Libeyre, Paul
Simon, Fabrice
Wei, Jing
Chai, Zhiyong
Li, Laifeng
author_sort Sgobba, Stefano
collection CERN
description The ITER Correction Coils (CCs) consist of three sets of six coils, Bottom (BCC), Side (SCC) and Top Correction Coils (TCC), respectively. The CCs rely on 10 kA NbTi cable-in-conduit conductor. Each CC winding pack is enclosed inside a 20 mm thick 316LN stainless steel case, providing structural reinforcement against the electromagnetic loads arising in the winding pack. The material of coil cases shall feature ready weldability both by laser and conventional techniques, high strength and toughness at 4 K. Material production involves not only hot rolled plates of different thicknesses, but also heavy gauge extrusions. An adapted steelmaking route including Electroslag Remelting (ESR) combined with a hot transformation step involving redundant multidirectional forging of the slabs and of the billets was adopted. This route allowed the stringent material specification to be fulfilled and permitted to achieve cleanliness, fineness of the structure and homogeneity on the final products. An extensive follow-up of the steel manufacturing through systematic non-destructive and destructive examinations was carried out in order to ascertain the soundness and the homogeneity of the final products. The progresses accomplished throughout the steel manufacturing are highlighted. The properties achieved on the final products that were enabled by the selected manufacturing route are discussed.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2017
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spelling oai-inspirehep.net-16736072019-09-30T06:29:59Zdoi:10.1016/j.fusengdes.2017.05.139http://cds.cern.ch/record/2318925engSgobba, StefanoDalin, Jean-MichelLangeslag, Stefanie Agnes ElisabethAviles Santillana, IgnacioLibeyre, PaulSimon, FabriceWei, JingChai, ZhiyongLi, LaifengQualification of structural stainless steel products for the ITER correction coil casesEngineeringThe ITER Correction Coils (CCs) consist of three sets of six coils, Bottom (BCC), Side (SCC) and Top Correction Coils (TCC), respectively. The CCs rely on 10 kA NbTi cable-in-conduit conductor. Each CC winding pack is enclosed inside a 20 mm thick 316LN stainless steel case, providing structural reinforcement against the electromagnetic loads arising in the winding pack. The material of coil cases shall feature ready weldability both by laser and conventional techniques, high strength and toughness at 4 K. Material production involves not only hot rolled plates of different thicknesses, but also heavy gauge extrusions. An adapted steelmaking route including Electroslag Remelting (ESR) combined with a hot transformation step involving redundant multidirectional forging of the slabs and of the billets was adopted. This route allowed the stringent material specification to be fulfilled and permitted to achieve cleanliness, fineness of the structure and homogeneity on the final products. An extensive follow-up of the steel manufacturing through systematic non-destructive and destructive examinations was carried out in order to ascertain the soundness and the homogeneity of the final products. The progresses accomplished throughout the steel manufacturing are highlighted. The properties achieved on the final products that were enabled by the selected manufacturing route are discussed.oai:inspirehep.net:16736072017
spellingShingle Engineering
Sgobba, Stefano
Dalin, Jean-Michel
Langeslag, Stefanie Agnes Elisabeth
Aviles Santillana, Ignacio
Libeyre, Paul
Simon, Fabrice
Wei, Jing
Chai, Zhiyong
Li, Laifeng
Qualification of structural stainless steel products for the ITER correction coil cases
title Qualification of structural stainless steel products for the ITER correction coil cases
title_full Qualification of structural stainless steel products for the ITER correction coil cases
title_fullStr Qualification of structural stainless steel products for the ITER correction coil cases
title_full_unstemmed Qualification of structural stainless steel products for the ITER correction coil cases
title_short Qualification of structural stainless steel products for the ITER correction coil cases
title_sort qualification of structural stainless steel products for the iter correction coil cases
topic Engineering
url https://dx.doi.org/10.1016/j.fusengdes.2017.05.139
http://cds.cern.ch/record/2318925
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