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Reliability oriented optimum design of the LHC interconnections - Part I: Mechanical compensation system

This LHC Project Note is aimed at defining and verifying the reliability levels of the LHC mechanical compensation system. The apportionment of the reliability levels to the components (bellows expansion joints) is integrated into the optimum design of the LHC interconnections. The prototype expansi...

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Detalles Bibliográficos
Autores principales: Garion, C, Skoczen, Blazej
Lenguaje:eng
Publicado: 2000
Materias:
Acceso en línea:http://cds.cern.ch/record/691777
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author Garion, C
Skoczen, Blazej
author_facet Garion, C
Skoczen, Blazej
author_sort Garion, C
collection CERN
description This LHC Project Note is aimed at defining and verifying the reliability levels of the LHC mechanical compensation system. The apportionment of the reliability levels to the components (bellows expansion joints) is integrated into the optimum design of the LHC interconnections. The prototype expansion joints constructed following the results of the optimisation procedure were tested at CERN under the cyclic loads representing the real service conditions. As a result of the statistical analysis, the Weibull probability density function has been identified. Finally, the assumed reliability levels were confirmed with respect to all bellows expansion joints. The test results were used to improve the numerical model that will serve to anticipate the response of expansion joints under the exceptional conditions of service.
id cern-691777
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2000
record_format invenio
spelling cern-6917772023-05-31T13:24:59Zhttp://cds.cern.ch/record/691777engGarion, CSkoczen, BlazejReliability oriented optimum design of the LHC interconnections - Part I: Mechanical compensation systemAccelerators and Storage RingsThis LHC Project Note is aimed at defining and verifying the reliability levels of the LHC mechanical compensation system. The apportionment of the reliability levels to the components (bellows expansion joints) is integrated into the optimum design of the LHC interconnections. The prototype expansion joints constructed following the results of the optimisation procedure were tested at CERN under the cyclic loads representing the real service conditions. As a result of the statistical analysis, the Weibull probability density function has been identified. Finally, the assumed reliability levels were confirmed with respect to all bellows expansion joints. The test results were used to improve the numerical model that will serve to anticipate the response of expansion joints under the exceptional conditions of service.LHC-PROJECT-NOTE-245oai:cds.cern.ch:6917772000-12-21
spellingShingle Accelerators and Storage Rings
Garion, C
Skoczen, Blazej
Reliability oriented optimum design of the LHC interconnections - Part I: Mechanical compensation system
title Reliability oriented optimum design of the LHC interconnections - Part I: Mechanical compensation system
title_full Reliability oriented optimum design of the LHC interconnections - Part I: Mechanical compensation system
title_fullStr Reliability oriented optimum design of the LHC interconnections - Part I: Mechanical compensation system
title_full_unstemmed Reliability oriented optimum design of the LHC interconnections - Part I: Mechanical compensation system
title_short Reliability oriented optimum design of the LHC interconnections - Part I: Mechanical compensation system
title_sort reliability oriented optimum design of the lhc interconnections - part i: mechanical compensation system
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/691777
work_keys_str_mv AT garionc reliabilityorientedoptimumdesignofthelhcinterconnectionspartimechanicalcompensationsystem
AT skoczenblazej reliabilityorientedoptimumdesignofthelhcinterconnectionspartimechanicalcompensationsystem