Stress intensity factors analyses for external semi-elliptical crack for repaired gas-pipeline by composite overwrap under pressure
The purpose of this article is to present the stress intensity factors (SIF) solutions for semi-elliptic crack in pipelines under internal pressures, the stress intensity factors are calculated by the three-dimensional finite element method (FEM) for cracked pipelines and repaired pipe by composite...
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Gruppo Italiano Frattura
2019-07-01
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doaj-8f0183d0f1f84653839a52adf758ca412020-11-25T02:29:35ZengGruppo Italiano FratturaFrattura ed Integrità Strutturale1971-89932019-07-01134959961310.3221/IGF-ESIS.49.5510.3221/IGF-ESIS.49.55Stress intensity factors analyses for external semi-elliptical crack for repaired gas-pipeline by composite overwrap under pressureD. E. BelhadriM. BelhamianiW. N. BouzitounaW. OudadThe purpose of this article is to present the stress intensity factors (SIF) solutions for semi-elliptic crack in pipelines under internal pressures, the stress intensity factors are calculated by the three-dimensional finite element method (FEM) for cracked pipelines and repaired pipe by composite patch. The distribution of normalized stress intensity factors (KI, KII and KIII) along the crack front for different crack lengths, crack depth, crack geometry, lap length and composite thickness was obtained by nodal calculations. Our results show the presence of three failure modes along the semi elliptical crack front and has three zones in which the stress intensity factor in mixed mode (KII) the higher-values comparing to KI and KIII. It can also be noted that the composite repair reduces the SIF KI by 46% and the KII by 55% and the KIII by 72% near the outside diameter of the pipe in each zone. However, the reduction of the SIF KI is more significant for the rectangular crack than for the semi-elliptic crack, from which it is concluded that the composite repair is very effective for a rectangular crack with respect to the semi-elliptic crack. Thereby, the fracture behavior of the semi-elliptic crack is governed by the three modes of failure and not only by mode I.https://www.fracturae.com/index.php/fis/article/view/2358/2634Stress intensity factorCrackCompositeAdhesivePipelineAPI 5L X65 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
D. E. Belhadri M. Belhamiani W. N. Bouzitouna W. Oudad |
spellingShingle |
D. E. Belhadri M. Belhamiani W. N. Bouzitouna W. Oudad Stress intensity factors analyses for external semi-elliptical crack for repaired gas-pipeline by composite overwrap under pressure Frattura ed Integrità Strutturale Stress intensity factor Crack Composite Adhesive Pipeline API 5L X65 |
author_facet |
D. E. Belhadri M. Belhamiani W. N. Bouzitouna W. Oudad |
author_sort |
D. E. Belhadri |
title |
Stress intensity factors analyses for external semi-elliptical crack for repaired gas-pipeline by composite overwrap under pressure |
title_short |
Stress intensity factors analyses for external semi-elliptical crack for repaired gas-pipeline by composite overwrap under pressure |
title_full |
Stress intensity factors analyses for external semi-elliptical crack for repaired gas-pipeline by composite overwrap under pressure |
title_fullStr |
Stress intensity factors analyses for external semi-elliptical crack for repaired gas-pipeline by composite overwrap under pressure |
title_full_unstemmed |
Stress intensity factors analyses for external semi-elliptical crack for repaired gas-pipeline by composite overwrap under pressure |
title_sort |
stress intensity factors analyses for external semi-elliptical crack for repaired gas-pipeline by composite overwrap under pressure |
publisher |
Gruppo Italiano Frattura |
series |
Frattura ed Integrità Strutturale |
issn |
1971-8993 |
publishDate |
2019-07-01 |
description |
The purpose of this article is to present the stress intensity factors (SIF) solutions for semi-elliptic crack in pipelines under internal pressures, the stress intensity factors are calculated by the three-dimensional finite element method (FEM) for cracked pipelines and repaired pipe by composite patch. The distribution of normalized stress intensity factors (KI, KII and KIII) along the crack front for different crack lengths, crack depth, crack geometry, lap length and composite thickness was obtained by nodal calculations. Our results show the presence of three failure modes along the semi elliptical crack front and has three zones in which the stress intensity factor in mixed mode (KII) the higher-values comparing to KI and KIII. It can also be noted that the composite repair reduces the SIF KI by 46% and the KII by 55% and the KIII by 72% near the outside diameter of the pipe in each zone. However, the reduction of the SIF KI is more significant for the rectangular crack than for the semi-elliptic crack, from which it is concluded that the composite repair is very effective for a rectangular crack with respect to the semi-elliptic crack. Thereby, the fracture behavior of the semi-elliptic crack is governed by the three modes of failure and not only by mode I. |
topic |
Stress intensity factor Crack Composite Adhesive Pipeline API 5L X65 |
url |
https://www.fracturae.com/index.php/fis/article/view/2358/2634 |
work_keys_str_mv |
AT debelhadri stressintensityfactorsanalysesforexternalsemiellipticalcrackforrepairedgaspipelinebycompositeoverwrapunderpressure AT mbelhamiani stressintensityfactorsanalysesforexternalsemiellipticalcrackforrepairedgaspipelinebycompositeoverwrapunderpressure AT wnbouzitouna stressintensityfactorsanalysesforexternalsemiellipticalcrackforrepairedgaspipelinebycompositeoverwrapunderpressure AT woudad stressintensityfactorsanalysesforexternalsemiellipticalcrackforrepairedgaspipelinebycompositeoverwrapunderpressure |
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1724832161996996608 |