Three-dimensional simulation of dislocation-crack interactions in BCC metals at the mesoscopic scale

A simulation of the dynamics of dislocation loops emitted at or close to a crack tip in b.c.c. metals is presented. The model simulates the growth of the crack tip plastic zone. The elastic (shielding) interactions between the plastic zone and the crack are calculated as a function of time and tempe...

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Main Authors: Devincre, B, Roberts, S
Format: Journal article
Language:English
Published: 1996
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author Devincre, B
Roberts, S
author_facet Devincre, B
Roberts, S
author_sort Devincre, B
collection OXFORD
description A simulation of the dynamics of dislocation loops emitted at or close to a crack tip in b.c.c. metals is presented. The model simulates the growth of the crack tip plastic zone. The elastic (shielding) interactions between the plastic zone and the crack are calculated as a function of time and temperature, allowing modelling of the increase in fracture toughness with temperature (i.e. the brittle-ductile transition near the lower shelf). The three-dimensional nature of the model allows for the first time study of the differences between dislocations of blunting and non-blunting types, i.e. in configurations where the emitted dislocation glide plane either does or does not contain the crack tip. We found that the blunting configuration induces a localised shielding of the crack close to the dislocation sources, but is not sufficient to give strong toughness increases. Conversely, non-blunting geometries produce more efficient shielding of the crack and are characterised by a slower extension of the plastic zone far from the crack tip. The model also demonstrates the importance of the density of dislocation sources along the crack tip in determining the form of the brittle to ductile transition. Crown copyright © 1996.
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spelling oxford-uuid:774278ae-6ff6-4129-83d9-d999541c7d192022-03-26T20:22:38ZThree-dimensional simulation of dislocation-crack interactions in BCC metals at the mesoscopic scaleJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:774278ae-6ff6-4129-83d9-d999541c7d19EnglishSymplectic Elements at Oxford1996Devincre, BRoberts, SA simulation of the dynamics of dislocation loops emitted at or close to a crack tip in b.c.c. metals is presented. The model simulates the growth of the crack tip plastic zone. The elastic (shielding) interactions between the plastic zone and the crack are calculated as a function of time and temperature, allowing modelling of the increase in fracture toughness with temperature (i.e. the brittle-ductile transition near the lower shelf). The three-dimensional nature of the model allows for the first time study of the differences between dislocations of blunting and non-blunting types, i.e. in configurations where the emitted dislocation glide plane either does or does not contain the crack tip. We found that the blunting configuration induces a localised shielding of the crack close to the dislocation sources, but is not sufficient to give strong toughness increases. Conversely, non-blunting geometries produce more efficient shielding of the crack and are characterised by a slower extension of the plastic zone far from the crack tip. The model also demonstrates the importance of the density of dislocation sources along the crack tip in determining the form of the brittle to ductile transition. Crown copyright © 1996.
spellingShingle Devincre, B
Roberts, S
Three-dimensional simulation of dislocation-crack interactions in BCC metals at the mesoscopic scale
title Three-dimensional simulation of dislocation-crack interactions in BCC metals at the mesoscopic scale
title_full Three-dimensional simulation of dislocation-crack interactions in BCC metals at the mesoscopic scale
title_fullStr Three-dimensional simulation of dislocation-crack interactions in BCC metals at the mesoscopic scale
title_full_unstemmed Three-dimensional simulation of dislocation-crack interactions in BCC metals at the mesoscopic scale
title_short Three-dimensional simulation of dislocation-crack interactions in BCC metals at the mesoscopic scale
title_sort three dimensional simulation of dislocation crack interactions in bcc metals at the mesoscopic scale
work_keys_str_mv AT devincreb threedimensionalsimulationofdislocationcrackinteractionsinbccmetalsatthemesoscopicscale
AT robertss threedimensionalsimulationofdislocationcrackinteractionsinbccmetalsatthemesoscopicscale