An approach to calculate the J-integral by digital image correlation displacement field measurement

<p>This paper presents a combined experimental-numerical technique for the calculation of the <em>J</em>-integral as an area integral in cracked specimens. The proposed technique is based on full-field measurement using digital image correlation (DIC) and the finite element method....

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Main Authors: Becker, T, Mostafavi, M, Tait, R, Marrow, J
Format: Journal article
Published: John Wiley and Sons 2012
Subjects:
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author Becker, T
Mostafavi, M
Tait, R
Marrow, J
Becker, T
author_facet Becker, T
Mostafavi, M
Tait, R
Marrow, J
Becker, T
author_sort Becker, T
collection OXFORD
description <p>This paper presents a combined experimental-numerical technique for the calculation of the <em>J</em>-integral as an area integral in cracked specimens. The proposed technique is based on full-field measurement using digital image correlation (DIC) and the finite element method. The <em>J</em>-integral is probably the most generalised and widely used parameter to quantify the fracture behaviour of both elastic and elastoplastic materials. The proposed technique has the advantage that it does not require crack length measurements nor is it limited to elastic fracture mechanics, provided that only small scale yielding is present. Evaluated are three test geometries; compact tension, three-point bend and the double torsion beam. Possible errors and their magnitude and the limitations of the method are considered.</p>
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spelling oxford-uuid:20acae96-ca7e-4468-9ff8-ec1b47d80de42022-03-26T11:28:58ZAn approach to calculate the J-integral by digital image correlation displacement field measurementJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:20acae96-ca7e-4468-9ff8-ec1b47d80de4Defect analysisSymplectic Elements at OxfordJohn Wiley and Sons2012Becker, TMostafavi, MTait, RMarrow, JBecker, T<p>This paper presents a combined experimental-numerical technique for the calculation of the <em>J</em>-integral as an area integral in cracked specimens. The proposed technique is based on full-field measurement using digital image correlation (DIC) and the finite element method. The <em>J</em>-integral is probably the most generalised and widely used parameter to quantify the fracture behaviour of both elastic and elastoplastic materials. The proposed technique has the advantage that it does not require crack length measurements nor is it limited to elastic fracture mechanics, provided that only small scale yielding is present. Evaluated are three test geometries; compact tension, three-point bend and the double torsion beam. Possible errors and their magnitude and the limitations of the method are considered.</p>
spellingShingle Defect analysis
Becker, T
Mostafavi, M
Tait, R
Marrow, J
Becker, T
An approach to calculate the J-integral by digital image correlation displacement field measurement
title An approach to calculate the J-integral by digital image correlation displacement field measurement
title_full An approach to calculate the J-integral by digital image correlation displacement field measurement
title_fullStr An approach to calculate the J-integral by digital image correlation displacement field measurement
title_full_unstemmed An approach to calculate the J-integral by digital image correlation displacement field measurement
title_short An approach to calculate the J-integral by digital image correlation displacement field measurement
title_sort approach to calculate the j integral by digital image correlation displacement field measurement
topic Defect analysis
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