Adaptive 3D algorithm to detect bridging ligaments during intergranular stress corrosion cracking of stainless steel

This paper presents an adaptive algorithm to identify holes in 3D objects which cannot be labelled with standard techniques, such as 6 or 26-connectivity based methods. The algorithm consists of two stages. The first one lies in the application of a voxel coding technique to make a transformation of...

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Main Authors: Janaszewski, M, Marrow, T, Babout, L
Format: Conference item
Published: International Society for Industrial Process Tomography 2007
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author Janaszewski, M
Marrow, T
Babout, L
author_facet Janaszewski, M
Marrow, T
Babout, L
author_sort Janaszewski, M
collection OXFORD
description This paper presents an adaptive algorithm to identify holes in 3D objects which cannot be labelled with standard techniques, such as 6 or 26-connectivity based methods. The algorithm consists of two stages. The first one lies in the application of a voxel coding technique to make a transformation of an object into a set of clusters, where a cluster is a set of connected voxels. The set of clusters gives important information about the object topology. In the second step, the algorithm extracts and analyses clusters to detect holes. The algorithm was satisfactorily tested on several 3D crack images from a stress corrosion cracking experiment on a stainless steel sample. In this case, the “holes” in the crack are bridging ligaments of solid material which connect the opposing faces of the crack. Discussion of results obtained and proposals for future work are presented.
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spelling oxford-uuid:4a628c59-43e1-4810-b664-7602dc8c0b782022-03-26T15:37:10ZAdaptive 3D algorithm to detect bridging ligaments during intergranular stress corrosion cracking of stainless steelConference itemhttp://purl.org/coar/resource_type/c_5794uuid:4a628c59-43e1-4810-b664-7602dc8c0b78Symplectic Elements at OxfordInternational Society for Industrial Process Tomography2007Janaszewski, MMarrow, TBabout, LThis paper presents an adaptive algorithm to identify holes in 3D objects which cannot be labelled with standard techniques, such as 6 or 26-connectivity based methods. The algorithm consists of two stages. The first one lies in the application of a voxel coding technique to make a transformation of an object into a set of clusters, where a cluster is a set of connected voxels. The set of clusters gives important information about the object topology. In the second step, the algorithm extracts and analyses clusters to detect holes. The algorithm was satisfactorily tested on several 3D crack images from a stress corrosion cracking experiment on a stainless steel sample. In this case, the “holes” in the crack are bridging ligaments of solid material which connect the opposing faces of the crack. Discussion of results obtained and proposals for future work are presented.
spellingShingle Janaszewski, M
Marrow, T
Babout, L
Adaptive 3D algorithm to detect bridging ligaments during intergranular stress corrosion cracking of stainless steel
title Adaptive 3D algorithm to detect bridging ligaments during intergranular stress corrosion cracking of stainless steel
title_full Adaptive 3D algorithm to detect bridging ligaments during intergranular stress corrosion cracking of stainless steel
title_fullStr Adaptive 3D algorithm to detect bridging ligaments during intergranular stress corrosion cracking of stainless steel
title_full_unstemmed Adaptive 3D algorithm to detect bridging ligaments during intergranular stress corrosion cracking of stainless steel
title_short Adaptive 3D algorithm to detect bridging ligaments during intergranular stress corrosion cracking of stainless steel
title_sort adaptive 3d algorithm to detect bridging ligaments during intergranular stress corrosion cracking of stainless steel
work_keys_str_mv AT janaszewskim adaptive3dalgorithmtodetectbridgingligamentsduringintergranularstresscorrosioncrackingofstainlesssteel
AT marrowt adaptive3dalgorithmtodetectbridgingligamentsduringintergranularstresscorrosioncrackingofstainlesssteel
AT baboutl adaptive3dalgorithmtodetectbridgingligamentsduringintergranularstresscorrosioncrackingofstainlesssteel