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Investigation of Materials and Welds for the Precompression Structure of the ITER Central Solenoid

The Central Solenoid (CS) is the backbone of the ITER magnet system. It consists of six independent coils held together by a vertical pre-compression structure that must react tensile loads and provide sufficient preload to maintain coil-to-coil contact during all stages of plasma operation. Materia...

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Autores principales: Sgobba, Stefano, Santillana, Ignacio Aviles, Langeslag, Stefanie Agnes Elisabeth, Pison, Pilar Fernandez, Menendez, Paula Freijedo, Izquierdo, Gonzalo Arnau, Libeyre, Paul, Hughes, Duke
Lenguaje:eng
Publicado: 2018
Materias:
Acceso en línea:https://dx.doi.org/10.1109/TASC.2017.2788863
http://cds.cern.ch/record/2299943
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author Sgobba, Stefano
Santillana, Ignacio Aviles
Langeslag, Stefanie Agnes Elisabeth
Pison, Pilar Fernandez
Menendez, Paula Freijedo
Izquierdo, Gonzalo Arnau
Libeyre, Paul
Hughes, Duke
author_facet Sgobba, Stefano
Santillana, Ignacio Aviles
Langeslag, Stefanie Agnes Elisabeth
Pison, Pilar Fernandez
Menendez, Paula Freijedo
Izquierdo, Gonzalo Arnau
Libeyre, Paul
Hughes, Duke
author_sort Sgobba, Stefano
collection CERN
description The Central Solenoid (CS) is the backbone of the ITER magnet system. It consists of six independent coils held together by a vertical pre-compression structure that must react tensile loads and provide sufficient preload to maintain coil-to-coil contact during all stages of plasma operation. Material selection and specifications applicable to the structural components of the pre-compression structure are particularly demanding. These include large forgings manufactured from a high strength austenitic stainless steel (FXM-19) with a stringent specification in terms of microstructure and maximum allowed magnetic permeability. Stringent requirements are also imposed on all welded joints. In particular, the attachment welds of the cooling pipes to the structure are subject to challenging restrictions in terms of weld imperfections and geometry. They must induce limited distortion of the components and are submitted to inspections carried out in accordance with the most severe acceptance levels of applicable standards. The results of extensive characterizations based on non-destructive and destructive evaluation of samples from different components and welds are reported in this paper, particularly focusing on the quality achieved at the microstructural and macrostructural level. The influence of the microstructure on the properties and on the inspectability of the material by non-destructive examinations is discussed.
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language eng
publishDate 2018
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spelling oai-inspirehep.net-16474392019-09-30T06:29:59Zdoi:10.1109/TASC.2017.2788863http://cds.cern.ch/record/2299943engSgobba, StefanoSantillana, Ignacio AvilesLangeslag, Stefanie Agnes ElisabethPison, Pilar FernandezMenendez, Paula FreijedoIzquierdo, Gonzalo ArnauLibeyre, PaulHughes, DukeInvestigation of Materials and Welds for the Precompression Structure of the ITER Central SolenoidMaterial ScienceThe Central Solenoid (CS) is the backbone of the ITER magnet system. It consists of six independent coils held together by a vertical pre-compression structure that must react tensile loads and provide sufficient preload to maintain coil-to-coil contact during all stages of plasma operation. Material selection and specifications applicable to the structural components of the pre-compression structure are particularly demanding. These include large forgings manufactured from a high strength austenitic stainless steel (FXM-19) with a stringent specification in terms of microstructure and maximum allowed magnetic permeability. Stringent requirements are also imposed on all welded joints. In particular, the attachment welds of the cooling pipes to the structure are subject to challenging restrictions in terms of weld imperfections and geometry. They must induce limited distortion of the components and are submitted to inspections carried out in accordance with the most severe acceptance levels of applicable standards. The results of extensive characterizations based on non-destructive and destructive evaluation of samples from different components and welds are reported in this paper, particularly focusing on the quality achieved at the microstructural and macrostructural level. The influence of the microstructure on the properties and on the inspectability of the material by non-destructive examinations is discussed.oai:inspirehep.net:16474392018
spellingShingle Material Science
Sgobba, Stefano
Santillana, Ignacio Aviles
Langeslag, Stefanie Agnes Elisabeth
Pison, Pilar Fernandez
Menendez, Paula Freijedo
Izquierdo, Gonzalo Arnau
Libeyre, Paul
Hughes, Duke
Investigation of Materials and Welds for the Precompression Structure of the ITER Central Solenoid
title Investigation of Materials and Welds for the Precompression Structure of the ITER Central Solenoid
title_full Investigation of Materials and Welds for the Precompression Structure of the ITER Central Solenoid
title_fullStr Investigation of Materials and Welds for the Precompression Structure of the ITER Central Solenoid
title_full_unstemmed Investigation of Materials and Welds for the Precompression Structure of the ITER Central Solenoid
title_short Investigation of Materials and Welds for the Precompression Structure of the ITER Central Solenoid
title_sort investigation of materials and welds for the precompression structure of the iter central solenoid
topic Material Science
url https://dx.doi.org/10.1109/TASC.2017.2788863
http://cds.cern.ch/record/2299943
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