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Gas Electron Multiplier foil holes: a study of mechanical and deformation effects

The GEM detectors will be installed at the Compact Muon Solenoid (CMS) experiment during Long Shutdown II of the LHC in 2018. The GEM foil is a basic part of the detector which consists of a composite material, i.e. polyimide coated with copper and perforated with a high density of micro holes. In t...

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Detalles Bibliográficos
Autores principales: Benussi, L, Bianco, S, Saviano, G, Muhammad, S, Piccolo, D, Suhaj, A, Sharma, A, Caponero, M, Passamonti, L, Pierluigi, D, Russo, A, Lalli, A, Valente, M, Ferrini, M, Langeslag, S A E, Sgobba, S, Aviles, I, Magnani, A, Vai, I
Lenguaje:eng
Publicado: 2016
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1748-0221/11/08/P08002
http://cds.cern.ch/record/2255809
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author Benussi, L
Bianco, S
Saviano, G
Muhammad, S
Piccolo, D
Suhaj, A
Sharma, A
Caponero, M
Passamonti, L
Pierluigi, D
Russo, A
Lalli, A
Valente, M
Ferrini, M
Langeslag, S A E
Sgobba, S
Aviles, I
Magnani, A
Vai, I
author_facet Benussi, L
Bianco, S
Saviano, G
Muhammad, S
Piccolo, D
Suhaj, A
Sharma, A
Caponero, M
Passamonti, L
Pierluigi, D
Russo, A
Lalli, A
Valente, M
Ferrini, M
Langeslag, S A E
Sgobba, S
Aviles, I
Magnani, A
Vai, I
author_sort Benussi, L
collection CERN
description The GEM detectors will be installed at the Compact Muon Solenoid (CMS) experiment during Long Shutdown II of the LHC in 2018. The GEM foil is a basic part of the detector which consists of a composite material, i.e. polyimide coated with copper and perforated with a high density of micro holes. In this paper the results of the GEM foil material characterization are reported, and a campaign of tensile and holes deformation tests is performed. During the tests, the complex radiation environment at CMS is taken into account and samples are prepared accordingly to see the impacts of the radiation on the GEM foil, i.e. non-irradiated samples are used as the reference and compared with neutrons- and gamma- irradiated. These studies provide the information necessary to optimize the stress level without damaging the foil and holes during the detector assembly in which the GEM foils stack is stretched simultaneously to maintain the uniform gap among the foils in order to get the designed performance of the detector. Finally, an estimate of the Young's modulus of the GEM foil is provided by using the tensile test data.
id oai-inspirehep.net-1480123
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2016
record_format invenio
spelling oai-inspirehep.net-14801232022-08-10T12:42:47Zdoi:10.1088/1748-0221/11/08/P08002http://cds.cern.ch/record/2255809engBenussi, LBianco, SSaviano, GMuhammad, SPiccolo, DSuhaj, ASharma, ACaponero, MPassamonti, LPierluigi, DRusso, ALalli, AValente, MFerrini, MLangeslag, S A ESgobba, SAviles, IMagnani, AVai, IGas Electron Multiplier foil holes: a study of mechanical and deformation effectsDetectors and Experimental TechniquesThe GEM detectors will be installed at the Compact Muon Solenoid (CMS) experiment during Long Shutdown II of the LHC in 2018. The GEM foil is a basic part of the detector which consists of a composite material, i.e. polyimide coated with copper and perforated with a high density of micro holes. In this paper the results of the GEM foil material characterization are reported, and a campaign of tensile and holes deformation tests is performed. During the tests, the complex radiation environment at CMS is taken into account and samples are prepared accordingly to see the impacts of the radiation on the GEM foil, i.e. non-irradiated samples are used as the reference and compared with neutrons- and gamma- irradiated. These studies provide the information necessary to optimize the stress level without damaging the foil and holes during the detector assembly in which the GEM foils stack is stretched simultaneously to maintain the uniform gap among the foils in order to get the designed performance of the detector. Finally, an estimate of the Young's modulus of the GEM foil is provided by using the tensile test data.oai:inspirehep.net:14801232016
spellingShingle Detectors and Experimental Techniques
Benussi, L
Bianco, S
Saviano, G
Muhammad, S
Piccolo, D
Suhaj, A
Sharma, A
Caponero, M
Passamonti, L
Pierluigi, D
Russo, A
Lalli, A
Valente, M
Ferrini, M
Langeslag, S A E
Sgobba, S
Aviles, I
Magnani, A
Vai, I
Gas Electron Multiplier foil holes: a study of mechanical and deformation effects
title Gas Electron Multiplier foil holes: a study of mechanical and deformation effects
title_full Gas Electron Multiplier foil holes: a study of mechanical and deformation effects
title_fullStr Gas Electron Multiplier foil holes: a study of mechanical and deformation effects
title_full_unstemmed Gas Electron Multiplier foil holes: a study of mechanical and deformation effects
title_short Gas Electron Multiplier foil holes: a study of mechanical and deformation effects
title_sort gas electron multiplier foil holes: a study of mechanical and deformation effects
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1088/1748-0221/11/08/P08002
http://cds.cern.ch/record/2255809
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