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Thermal Grease Evaluation for ATLAS Upgrade Micro-Strip Detector.

The ATLAS upgrade detector foreseen at the phase 2 upgrade of LHC requires a complete new inner detector using silicon pixel and strip detectors. For both technologies, a specific mechanical and thermal design is required. Such a design may use soft thermal interfaces such as grease between the vari...

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Autores principales: Barbier, G, Cadoux, F, Clark, A, Ferrère, D, Pernecker, S, Perrin, E, Streit, KP, Weber, M
Lenguaje:eng
Publicado: 2010
Materias:
Acceso en línea:http://cds.cern.ch/record/1238166
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author Barbier, G
Cadoux, F
Clark, A
Ferrère, D
Pernecker, S
Perrin, E
Streit, KP
Weber, M
author_facet Barbier, G
Cadoux, F
Clark, A
Ferrère, D
Pernecker, S
Perrin, E
Streit, KP
Weber, M
author_sort Barbier, G
collection CERN
description The ATLAS upgrade detector foreseen at the phase 2 upgrade of LHC requires a complete new inner detector using silicon pixel and strip detectors. For both technologies, a specific mechanical and thermal design is required. Such a design may use soft thermal interfaces such as grease between the various parts. One foreseeable use would be between the cooling pipe and the thermal block allowing the strip modules to be decoupled from the mechanical and cooling structure. This note describes the technique used and the results obtained when characterizing a few grease samples. The results have been compared with thermal FEA simulations. A thermal conductivity measurement for each sample could be extracted from the measurements, with a systematic uncertainty of less than 6%. Some samples were irradiated to the expected fluence at sLHC and their resulting thermal conductivity compared with the non-irradiated samples.
id cern-1238166
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2010
record_format invenio
spelling cern-12381662019-09-30T06:29:59Zhttp://cds.cern.ch/record/1238166engBarbier, GCadoux, FClark, AFerrère, DPernecker, SPerrin, EStreit, KPWeber, MThermal Grease Evaluation for ATLAS Upgrade Micro-Strip Detector.Detectors and Experimental TechniquesThe ATLAS upgrade detector foreseen at the phase 2 upgrade of LHC requires a complete new inner detector using silicon pixel and strip detectors. For both technologies, a specific mechanical and thermal design is required. Such a design may use soft thermal interfaces such as grease between the various parts. One foreseeable use would be between the cooling pipe and the thermal block allowing the strip modules to be decoupled from the mechanical and cooling structure. This note describes the technique used and the results obtained when characterizing a few grease samples. The results have been compared with thermal FEA simulations. A thermal conductivity measurement for each sample could be extracted from the measurements, with a systematic uncertainty of less than 6%. Some samples were irradiated to the expected fluence at sLHC and their resulting thermal conductivity compared with the non-irradiated samples.ATL-UPGRADE-PUB-2010-002oai:cds.cern.ch:12381662010-02-04
spellingShingle Detectors and Experimental Techniques
Barbier, G
Cadoux, F
Clark, A
Ferrère, D
Pernecker, S
Perrin, E
Streit, KP
Weber, M
Thermal Grease Evaluation for ATLAS Upgrade Micro-Strip Detector.
title Thermal Grease Evaluation for ATLAS Upgrade Micro-Strip Detector.
title_full Thermal Grease Evaluation for ATLAS Upgrade Micro-Strip Detector.
title_fullStr Thermal Grease Evaluation for ATLAS Upgrade Micro-Strip Detector.
title_full_unstemmed Thermal Grease Evaluation for ATLAS Upgrade Micro-Strip Detector.
title_short Thermal Grease Evaluation for ATLAS Upgrade Micro-Strip Detector.
title_sort thermal grease evaluation for atlas upgrade micro-strip detector.
topic Detectors and Experimental Techniques
url http://cds.cern.ch/record/1238166
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