Predicting residual strength of multi-cracked thin sheet plates based on CTOA or cohesive crack model using the extended finite element method
An extended finite element method is applied to predict residual strength of cracked thin sheet plates. Two kinds of middle tension M(T) testings different in initial crack direction are simulated for stable crack growth process based on a crack tip opening angle criterion or a cohesive crack model....
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Published in | IOP conference series. Materials Science and Engineering Vol. 10; no. 1; p. 012063 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
Bristol
IOP Publishing
01.06.2010
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Abstract | An extended finite element method is applied to predict residual strength of cracked thin sheet plates. Two kinds of middle tension M(T) testings different in initial crack direction are simulated for stable crack growth process based on a crack tip opening angle criterion or a cohesive crack model. Crack growth direction is determined from direction of the maximum principal stress at the crack tip. Material follows plane-stress J2 plasticity with linear isotropic/kinematic hardening. The residual strength and crack propagation path obtained by the extended finite element method are compared to experimental measurement and show reasonable agreement. |
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AbstractList | An extended finite element method is applied to predict residual strength of cracked thin sheet plates. Two kinds of middle tension M(T) testings different in initial crack direction are simulated for stable crack growth process based on a crack tip opening angle criterion or a cohesive crack model. Crack growth direction is determined from direction of the maximum principal stress at the crack tip. Material follows plane-stress J2 plasticity with linear isotropic/kinematic hardening. The residual strength and crack propagation path obtained by the extended finite element method are compared to experimental measurement and show reasonable agreement. |
Author | Zi, G Chau-Dinh, T Kim, J |
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Cites_doi | 10.1002/nme.1286 10.1016/S0168-874X(00)00035-4 10.1002/nme.143 10.1002/nme.849 10.1016/j.engfracmech.2005.04.005 10.1016/S0013-7944(02)00125-X |
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References | Crisfield M A (10) 1991; 1 3 4 5 6 7 Simo J C (8) 1998 9 Chen C C (2) 1999 Dawicke D S (1) 1999 |
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Snippet | An extended finite element method is applied to predict residual strength of cracked thin sheet plates. Two kinds of middle tension M(T) testings different in... |
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SubjectTerms | Cohesion Computer simulation Crack propagation Crack tips Cracks Finite element analysis Finite element method Mathematical analysis Mathematical models Plates Residual strength |
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Title | Predicting residual strength of multi-cracked thin sheet plates based on CTOA or cohesive crack model using the extended finite element method |
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