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Characterization of the Copper Resistance in the LHC Main Dipole Bypass Diode Leads

A fundamental component of the quench protection system of the large hadron collider (LHC) superconducting dipole magnets are bypass diodes. During a quench, the high current powering the magnet coil is redirected through the parallel diode. The resistance of diode current lead contacts is essential...

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Autores principales: Bednarski, Mikolaj, Ludwin, Jaromir, Wojas, Damian, Bednarek, Mateusz, D’Angelo, Giorgio
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:https://dx.doi.org/10.1109/TASC.2022.3165949
http://cds.cern.ch/record/2815323
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author Bednarski, Mikolaj
Ludwin, Jaromir
Wojas, Damian
Bednarek, Mateusz
D’Angelo, Giorgio
author_facet Bednarski, Mikolaj
Ludwin, Jaromir
Wojas, Damian
Bednarek, Mateusz
D’Angelo, Giorgio
author_sort Bednarski, Mikolaj
collection CERN
description A fundamental component of the quench protection system of the large hadron collider (LHC) superconducting dipole magnets are bypass diodes. During a quench, the high current powering the magnet coil is redirected through the parallel diode. The resistance of diode current lead contacts is essential due to the risk of overheat. There is no possibility to measure their resistances, as the superconducting magnet coil acts as a short-circuit. Those measurements are possible when the magnet is in the resistive state. The most important point is the contact surface between the magnet busbar and the diode current lead. The resistance of this contact is not possible to measure when the cryostat is closed, so an indirect method that includes the resistance of the copper parts has to be developed. This article describes the methodology of measurements and calculations and summarizes the results of the resistance measurements of copper current leads of the LHC dipole bypass diodes. The measurements have been performed in a wide temperature region, to reproduce different environmental parameters of the LHC. It was proven that the temperature of measured samples has a significant influence on obtained results and a systematic approach is essential. Precise values of the resistance parameters have been obtained and will be used in the future measurements of the quality of connection of those diodes and, in consequence, will be used in the quality assurance of the quench protection system.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
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spelling cern-28153232022-07-09T19:34:27Zdoi:10.1109/TASC.2022.3165949http://cds.cern.ch/record/2815323engBednarski, MikolajLudwin, JaromirWojas, DamianBednarek, MateuszD’Angelo, GiorgioCharacterization of the Copper Resistance in the LHC Main Dipole Bypass Diode LeadsAccelerators and Storage RingsA fundamental component of the quench protection system of the large hadron collider (LHC) superconducting dipole magnets are bypass diodes. During a quench, the high current powering the magnet coil is redirected through the parallel diode. The resistance of diode current lead contacts is essential due to the risk of overheat. There is no possibility to measure their resistances, as the superconducting magnet coil acts as a short-circuit. Those measurements are possible when the magnet is in the resistive state. The most important point is the contact surface between the magnet busbar and the diode current lead. The resistance of this contact is not possible to measure when the cryostat is closed, so an indirect method that includes the resistance of the copper parts has to be developed. This article describes the methodology of measurements and calculations and summarizes the results of the resistance measurements of copper current leads of the LHC dipole bypass diodes. The measurements have been performed in a wide temperature region, to reproduce different environmental parameters of the LHC. It was proven that the temperature of measured samples has a significant influence on obtained results and a systematic approach is essential. Precise values of the resistance parameters have been obtained and will be used in the future measurements of the quality of connection of those diodes and, in consequence, will be used in the quality assurance of the quench protection system.oai:cds.cern.ch:28153232022
spellingShingle Accelerators and Storage Rings
Bednarski, Mikolaj
Ludwin, Jaromir
Wojas, Damian
Bednarek, Mateusz
D’Angelo, Giorgio
Characterization of the Copper Resistance in the LHC Main Dipole Bypass Diode Leads
title Characterization of the Copper Resistance in the LHC Main Dipole Bypass Diode Leads
title_full Characterization of the Copper Resistance in the LHC Main Dipole Bypass Diode Leads
title_fullStr Characterization of the Copper Resistance in the LHC Main Dipole Bypass Diode Leads
title_full_unstemmed Characterization of the Copper Resistance in the LHC Main Dipole Bypass Diode Leads
title_short Characterization of the Copper Resistance in the LHC Main Dipole Bypass Diode Leads
title_sort characterization of the copper resistance in the lhc main dipole bypass diode leads
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1109/TASC.2022.3165949
http://cds.cern.ch/record/2815323
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AT ludwinjaromir characterizationofthecopperresistanceinthelhcmaindipolebypassdiodeleads
AT wojasdamian characterizationofthecopperresistanceinthelhcmaindipolebypassdiodeleads
AT bednarekmateusz characterizationofthecopperresistanceinthelhcmaindipolebypassdiodeleads
AT dangelogiorgio characterizationofthecopperresistanceinthelhcmaindipolebypassdiodeleads