Elastic-plastic analysis of crack on bimaterial interface

In this paper are presented solutions for the stress and dis­placement fields for a crack that lies along the interface of an elastic and elastic - plastic material and for a crack between two different elastic - plastic materials. These solutions are obtained using the J2-deformation theory with th...

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Main Authors: Nikolić Ružica R., Veljković Jelena M.
Format: Article
Language:English
Published: Serbian Society of Mechanics & Mathematical Institute of the Serbian Academy of Sciences and Arts, Belgrade 2005-01-01
Series:Theoretical and Applied Mechanics
Online Access:http://www.doiserbia.nb.rs/img/doi/1450-5584/2005/1450-55840503193N.pdf
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spelling doaj-5f3c9f99f4164a0ba6c42a0ddc51b20c2020-11-25T00:13:05ZengSerbian Society of Mechanics & Mathematical Institute of the Serbian Academy of Sciences and Arts, BelgradeTheoretical and Applied Mechanics1450-55842005-01-0132319320710.2298/TAM0503193NElastic-plastic analysis of crack on bimaterial interfaceNikolić Ružica R.Veljković Jelena M.In this paper are presented solutions for the stress and dis­placement fields for a crack that lies along the interface of an elastic and elastic - plastic material and for a crack between two different elastic - plastic materials. These solutions are obtained using the J2-deformation theory with the power - law strain hardening. In this paper results are described for a small scale yielding at the crack tip. The near tip fields do not have a separable singular form, of the HRR type fields, as in homogeneous media, they do, however bare interesting similarities to certain mixed -mode HRR fields. Under the small scale yielding the elastic fields are specified by a complex stress intensity factor and phase angle loading, while plastic field is characterized by a new phase angle. The size of plastic zone in plane strain and plane stress and displacement fields at the crack tip for the new phase angle are obtained. The crack tip opens smoothly and the crack opening displacement is scaled by the J-integral. The whole analysis is performed by application of the Mathematica symbolic programming routine. http://www.doiserbia.nb.rs/img/doi/1450-5584/2005/1450-55840503193N.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Nikolić Ružica R.
Veljković Jelena M.
spellingShingle Nikolić Ružica R.
Veljković Jelena M.
Elastic-plastic analysis of crack on bimaterial interface
Theoretical and Applied Mechanics
author_facet Nikolić Ružica R.
Veljković Jelena M.
author_sort Nikolić Ružica R.
title Elastic-plastic analysis of crack on bimaterial interface
title_short Elastic-plastic analysis of crack on bimaterial interface
title_full Elastic-plastic analysis of crack on bimaterial interface
title_fullStr Elastic-plastic analysis of crack on bimaterial interface
title_full_unstemmed Elastic-plastic analysis of crack on bimaterial interface
title_sort elastic-plastic analysis of crack on bimaterial interface
publisher Serbian Society of Mechanics & Mathematical Institute of the Serbian Academy of Sciences and Arts, Belgrade
series Theoretical and Applied Mechanics
issn 1450-5584
publishDate 2005-01-01
description In this paper are presented solutions for the stress and dis­placement fields for a crack that lies along the interface of an elastic and elastic - plastic material and for a crack between two different elastic - plastic materials. These solutions are obtained using the J2-deformation theory with the power - law strain hardening. In this paper results are described for a small scale yielding at the crack tip. The near tip fields do not have a separable singular form, of the HRR type fields, as in homogeneous media, they do, however bare interesting similarities to certain mixed -mode HRR fields. Under the small scale yielding the elastic fields are specified by a complex stress intensity factor and phase angle loading, while plastic field is characterized by a new phase angle. The size of plastic zone in plane strain and plane stress and displacement fields at the crack tip for the new phase angle are obtained. The crack tip opens smoothly and the crack opening displacement is scaled by the J-integral. The whole analysis is performed by application of the Mathematica symbolic programming routine.
url http://www.doiserbia.nb.rs/img/doi/1450-5584/2005/1450-55840503193N.pdf
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