Analytical expressions for Jk-integrals of orthotropic/isotropic interface cracks
•Analytical SIFs, Jk and COD of interface cracks in orthotropic/isotropic bimaterials.•Displacement and stress fields near the orthotropic/isotropic interface crack.•Analytical SIFs of a finite interface crack in an infinite orthotropic/isotropic bimaterial. This paper presents new analytical expres...
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Published in | Theoretical and applied fracture mechanics Vol. 134; p. 104643 |
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Main Author | |
Format | Journal Article |
Language | English |
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Elsevier Ltd
01.12.2024
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ISSN | 0167-8442 |
DOI | 10.1016/j.tafmec.2024.104643 |
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Abstract | •Analytical SIFs, Jk and COD of interface cracks in orthotropic/isotropic bimaterials.•Displacement and stress fields near the orthotropic/isotropic interface crack.•Analytical SIFs of a finite interface crack in an infinite orthotropic/isotropic bimaterial.
This paper presents new analytical expressions for Jk integrals in terms of the stress intensity factors (SIF) of an in-plane traction free interface crack in an orthotropic/isotropic bimaterial. Using the sextic formalism of Stroh and Muskhelishvili formulation, a general solution for the stress and displacement fields near the interface crack of this bimaterial are derived. This paper also presents an analytical expression for the SIFs of a finite interface crack in an infinite orthotropic/isotropic bimaterial subject to in-plane remote stresses. For validation of the presented theory, the analytical Jk integrals, crack opening displacements and stresses along the interface of an infinite orthotropic/ aluminum plate with a finite interface crack subject to tension are compared with the corresponding numerical results obtained using the boundary element method. For the orthotropic material, different fibre reinforced polymers are considered. The results show that a metal/fibre composite can be tailored to crack growth resistance. This study provides explicit analytical expressions for fracture parameters of cracks between isotropic and orthotropic materials which are not currently available in the SIF handbooks. |
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AbstractList | •Analytical SIFs, Jk and COD of interface cracks in orthotropic/isotropic bimaterials.•Displacement and stress fields near the orthotropic/isotropic interface crack.•Analytical SIFs of a finite interface crack in an infinite orthotropic/isotropic bimaterial.
This paper presents new analytical expressions for Jk integrals in terms of the stress intensity factors (SIF) of an in-plane traction free interface crack in an orthotropic/isotropic bimaterial. Using the sextic formalism of Stroh and Muskhelishvili formulation, a general solution for the stress and displacement fields near the interface crack of this bimaterial are derived. This paper also presents an analytical expression for the SIFs of a finite interface crack in an infinite orthotropic/isotropic bimaterial subject to in-plane remote stresses. For validation of the presented theory, the analytical Jk integrals, crack opening displacements and stresses along the interface of an infinite orthotropic/ aluminum plate with a finite interface crack subject to tension are compared with the corresponding numerical results obtained using the boundary element method. For the orthotropic material, different fibre reinforced polymers are considered. The results show that a metal/fibre composite can be tailored to crack growth resistance. This study provides explicit analytical expressions for fracture parameters of cracks between isotropic and orthotropic materials which are not currently available in the SIF handbooks. |
ArticleNumber | 104643 |
Author | Tafreshi, Azam |
Author_xml | – sequence: 1 givenname: Azam surname: Tafreshi fullname: Tafreshi, Azam email: atafreshi@manchester.ac.uk organization: Department of Mechanical and Aerospace Engineering, School of Engineering, University of Manchester, M13 9PL, United Kingdom |
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Cites_doi | 10.1016/0022-5096(71)90004-4 10.1016/S0997-7538(98)80062-4 10.1093/oso/9780195074475.001.0001 10.1016/0020-7683(88)90099-6 10.2514/1.41729 10.1007/BF00182891 10.2514/1.11502 10.1016/j.ijsolstr.2010.04.033 10.1016/j.enganabound.2005.08.003 10.1111/ffe.13358 10.1016/S0020-7683(02)00671-6 10.1111/ffe.12835 10.1243/030932403765310554 10.1016/0022-5096(89)90023-9 10.1098/rspa.1990.0016 10.1016/j.compstruct.2004.06.003 10.1080/14786435808565804 10.1163/156856106777144354 10.1023/B:FRAC.0000026385.01796.da 10.1111/ffe.12587 10.1016/j.engfracmech.2021.107527 10.1016/j.enganabound.2011.03.006 10.1023/A:1025100507702 10.1016/j.tafmec.2022.103524 10.1007/BF03185167 10.1115/1.1459067 10.1016/j.tafmec.2015.12.003 10.1115/1.3625813 10.1115/1.3625816 10.1016/j.ijsolstr.2007.05.014 10.1007/BF00186854 10.1016/S0955-7997(01)00098-4 10.1016/0020-7225(71)90055-3 10.1016/j.enganabound.2008.04.008 10.1785/BSSA0490020199 10.1016/0020-7683(86)90031-4 10.1016/j.tafmec.2014.12.009 |
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Keywords | Crack opening displacement Jk-integrals Mukhelishivili formulation Stress intensity factor Orthotropic/isotropic bimaterial Interface crack Stroh formalism |
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