Numerical simulation of plasticity-induced fatigue crack closure with emphasis on the crack growth scheme: 2D and 3D analyses

Bibliographic Details
Main Authors: de Matos, P, Nowell, D
Format: Journal article
Published: 2008
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author de Matos, P
Nowell, D
author_facet de Matos, P
Nowell, D
author_sort de Matos, P
collection OXFORD
description
first_indexed 2024-03-07T06:58:12Z
format Journal article
id oxford-uuid:fed94429-96ff-4800-bdb0-d172cf54a77e
institution University of Oxford
last_indexed 2024-03-07T06:58:12Z
publishDate 2008
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spelling oxford-uuid:fed94429-96ff-4800-bdb0-d172cf54a77e2022-03-27T13:39:49ZNumerical simulation of plasticity-induced fatigue crack closure with emphasis on the crack growth scheme: 2D and 3D analysesJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:fed94429-96ff-4800-bdb0-d172cf54a77eSymplectic Elements at Oxford2008de Matos, PNowell, D
spellingShingle de Matos, P
Nowell, D
Numerical simulation of plasticity-induced fatigue crack closure with emphasis on the crack growth scheme: 2D and 3D analyses
title Numerical simulation of plasticity-induced fatigue crack closure with emphasis on the crack growth scheme: 2D and 3D analyses
title_full Numerical simulation of plasticity-induced fatigue crack closure with emphasis on the crack growth scheme: 2D and 3D analyses
title_fullStr Numerical simulation of plasticity-induced fatigue crack closure with emphasis on the crack growth scheme: 2D and 3D analyses
title_full_unstemmed Numerical simulation of plasticity-induced fatigue crack closure with emphasis on the crack growth scheme: 2D and 3D analyses
title_short Numerical simulation of plasticity-induced fatigue crack closure with emphasis on the crack growth scheme: 2D and 3D analyses
title_sort numerical simulation of plasticity induced fatigue crack closure with emphasis on the crack growth scheme 2d and 3d analyses
work_keys_str_mv AT dematosp numericalsimulationofplasticityinducedfatiguecrackclosurewithemphasisonthecrackgrowthscheme2dand3danalyses
AT nowelld numericalsimulationofplasticityinducedfatiguecrackclosurewithemphasisonthecrackgrowthscheme2dand3danalyses