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A Novel Device for the Measurement of the Mechanical and Magnetic Axes of Superconducting Magnet Assemblies for Accelerators

In the context of the LHC superconducting magnet production, especially for dipoles and quadrupoles due to their complexity, it is foreseen to perform acceptance tests, at an early production stage, to detect possible significant deviations from the design values. The knowledge of the magnetic field...

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Detalles Bibliográficos
Autores principales: Aznar, S, Billan, J, Fischer, F, Galbraith, Peter, García-Pérez, J, Goy, S, Mermillod, N, Peiro, G, Patti, G, Rathjen, C
Lenguaje:eng
Publicado: 2002
Materias:
Acceso en línea:https://dx.doi.org/10.1109/TASC.2002.1018742
http://cds.cern.ch/record/544645
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author Aznar, S
Billan, J
Fischer, F
Galbraith, Peter
García-Pérez, J
Goy, S
Mermillod, N
Peiro, G
Patti, G
Rathjen, C
author_facet Aznar, S
Billan, J
Fischer, F
Galbraith, Peter
García-Pérez, J
Goy, S
Mermillod, N
Peiro, G
Patti, G
Rathjen, C
author_sort Aznar, S
collection CERN
description In the context of the LHC superconducting magnet production, especially for dipoles and quadrupoles due to their complexity, it is foreseen to perform acceptance tests, at an early production stage, to detect possible significant deviations from the design values. The knowledge of the magnetic field geometry is very important, especially for the main magnets. In order to get this information a new device has been conceived that measures the magnets at room temperature during different stages of construction. This device incorporates a sensitive measuring probe and an efficient data acquisition system because the coils are only powered at about 10-5 of the nominal D.C. current. It is dedicated to Quadrupole and Dipole (by using Quadrupole-Configured Dipole (QCD) transformation) magnets, but is also easily adaptable to higher order magnets (n = 3, 4 and 5) by specific orientation of the search coils. It is equipped with magnetic sensors (4 fixed tangential coils and AC excitation current for the magnet) and position sensors (3D-laser tracker and light reflector) that allow the simultaneous detection of the magnetic field axis and the cold bore axis. It is equipped as well with a set of 4 LEDs and associated with a CCD camera that allows both the measurement of the cold bore diameter and its position with respect to the mole. This paper describes the system and reports the first results measured on the pre-series magnets recently assembled.
id cern-544645
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2002
record_format invenio
spelling cern-5446452023-05-31T13:23:16Zdoi:10.1109/TASC.2002.1018742http://cds.cern.ch/record/544645engAznar, SBillan, JFischer, FGalbraith, PeterGarcía-Pérez, JGoy, SMermillod, NPeiro, GPatti, GRathjen, CA Novel Device for the Measurement of the Mechanical and Magnetic Axes of Superconducting Magnet Assemblies for AcceleratorsAccelerators and Storage RingsIn the context of the LHC superconducting magnet production, especially for dipoles and quadrupoles due to their complexity, it is foreseen to perform acceptance tests, at an early production stage, to detect possible significant deviations from the design values. The knowledge of the magnetic field geometry is very important, especially for the main magnets. In order to get this information a new device has been conceived that measures the magnets at room temperature during different stages of construction. This device incorporates a sensitive measuring probe and an efficient data acquisition system because the coils are only powered at about 10-5 of the nominal D.C. current. It is dedicated to Quadrupole and Dipole (by using Quadrupole-Configured Dipole (QCD) transformation) magnets, but is also easily adaptable to higher order magnets (n = 3, 4 and 5) by specific orientation of the search coils. It is equipped with magnetic sensors (4 fixed tangential coils and AC excitation current for the magnet) and position sensors (3D-laser tracker and light reflector) that allow the simultaneous detection of the magnetic field axis and the cold bore axis. It is equipped as well with a set of 4 LEDs and associated with a CCD camera that allows both the measurement of the cold bore diameter and its position with respect to the mole. This paper describes the system and reports the first results measured on the pre-series magnets recently assembled.LHC-Project-Report-536CERN-LHC-Project-Report-536oai:cds.cern.ch:5446452002-03-06
spellingShingle Accelerators and Storage Rings
Aznar, S
Billan, J
Fischer, F
Galbraith, Peter
García-Pérez, J
Goy, S
Mermillod, N
Peiro, G
Patti, G
Rathjen, C
A Novel Device for the Measurement of the Mechanical and Magnetic Axes of Superconducting Magnet Assemblies for Accelerators
title A Novel Device for the Measurement of the Mechanical and Magnetic Axes of Superconducting Magnet Assemblies for Accelerators
title_full A Novel Device for the Measurement of the Mechanical and Magnetic Axes of Superconducting Magnet Assemblies for Accelerators
title_fullStr A Novel Device for the Measurement of the Mechanical and Magnetic Axes of Superconducting Magnet Assemblies for Accelerators
title_full_unstemmed A Novel Device for the Measurement of the Mechanical and Magnetic Axes of Superconducting Magnet Assemblies for Accelerators
title_short A Novel Device for the Measurement of the Mechanical and Magnetic Axes of Superconducting Magnet Assemblies for Accelerators
title_sort novel device for the measurement of the mechanical and magnetic axes of superconducting magnet assemblies for accelerators
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1109/TASC.2002.1018742
http://cds.cern.ch/record/544645
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