Correlations of electrochemical noise, acoustic emission and complementary monitoring techniques during intergranular stress-corrosion cracking of austenitic stainless steel

Specimens of sensitized type AISI 304 stainless steel were subjected to constant load and exposed to an aqueous sodium thiosulphate solution. Intergranular stress-corrosion cracking was monitored simultaneously for electrochemical noise, acoustic emission, and specimen elongation. A section of the g...

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Main Authors: Kovac, J, Alaux, C, Marrow, T, Govekar, E, Legat, A
格式: Journal article
语言:English
出版: 2010
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author Kovac, J
Alaux, C
Marrow, T
Govekar, E
Legat, A
author_facet Kovac, J
Alaux, C
Marrow, T
Govekar, E
Legat, A
author_sort Kovac, J
collection OXFORD
description Specimens of sensitized type AISI 304 stainless steel were subjected to constant load and exposed to an aqueous sodium thiosulphate solution. Intergranular stress-corrosion cracking was monitored simultaneously for electrochemical noise, acoustic emission, and specimen elongation. A section of the gauge length was monitored optically with subsequent analysis by digital image correlation. Correlations between the results were observed and analysed. Electrochemical noise and elongation are associated with crack propagation from the early stages, whereas acoustic emission is associated with the final stages of fracture. Digital image correlation analysis is sensitive to crack development, and is used to measure crack length and crack openings. © 2010 Elsevier Ltd.
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spelling oxford-uuid:cd61fca2-40db-413d-b44d-a256c09a02d92022-03-27T07:28:25ZCorrelations of electrochemical noise, acoustic emission and complementary monitoring techniques during intergranular stress-corrosion cracking of austenitic stainless steelJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:cd61fca2-40db-413d-b44d-a256c09a02d9EnglishSymplectic Elements at Oxford2010Kovac, JAlaux, CMarrow, TGovekar, ELegat, ASpecimens of sensitized type AISI 304 stainless steel were subjected to constant load and exposed to an aqueous sodium thiosulphate solution. Intergranular stress-corrosion cracking was monitored simultaneously for electrochemical noise, acoustic emission, and specimen elongation. A section of the gauge length was monitored optically with subsequent analysis by digital image correlation. Correlations between the results were observed and analysed. Electrochemical noise and elongation are associated with crack propagation from the early stages, whereas acoustic emission is associated with the final stages of fracture. Digital image correlation analysis is sensitive to crack development, and is used to measure crack length and crack openings. © 2010 Elsevier Ltd.
spellingShingle Kovac, J
Alaux, C
Marrow, T
Govekar, E
Legat, A
Correlations of electrochemical noise, acoustic emission and complementary monitoring techniques during intergranular stress-corrosion cracking of austenitic stainless steel
title Correlations of electrochemical noise, acoustic emission and complementary monitoring techniques during intergranular stress-corrosion cracking of austenitic stainless steel
title_full Correlations of electrochemical noise, acoustic emission and complementary monitoring techniques during intergranular stress-corrosion cracking of austenitic stainless steel
title_fullStr Correlations of electrochemical noise, acoustic emission and complementary monitoring techniques during intergranular stress-corrosion cracking of austenitic stainless steel
title_full_unstemmed Correlations of electrochemical noise, acoustic emission and complementary monitoring techniques during intergranular stress-corrosion cracking of austenitic stainless steel
title_short Correlations of electrochemical noise, acoustic emission and complementary monitoring techniques during intergranular stress-corrosion cracking of austenitic stainless steel
title_sort correlations of electrochemical noise acoustic emission and complementary monitoring techniques during intergranular stress corrosion cracking of austenitic stainless steel
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AT marrowt correlationsofelectrochemicalnoiseacousticemissionandcomplementarymonitoringtechniquesduringintergranularstresscorrosioncrackingofausteniticstainlesssteel
AT govekare correlationsofelectrochemicalnoiseacousticemissionandcomplementarymonitoringtechniquesduringintergranularstresscorrosioncrackingofausteniticstainlesssteel
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