Variation of stress intensity factor and elastic T-stress along the crack-front in finite thickness plates

Non-singular terms in the series expansion of the elastic crack-tip stress fields, commonly referred to as the T-stress. The T-stress is as an additional stress field characterizing parameter to stress intensity factor (K) in the analysis of cracked bodies. T-stress is used as an important constrain...

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Main Authors: S. K. Kudari, K. G. Kodancha
Format: Article
Language:English
Published: Gruppo Italiano Frattura 2009-04-01
Series:Fracture and Structural Integrity
Subjects:
Online Access:http://www.gruppofrattura.it/pdf/rivista/numero8/numero_8_art_4.pdf
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author S. K. Kudari
K. G. Kodancha
author_facet S. K. Kudari
K. G. Kodancha
author_sort S. K. Kudari
collection DOAJ
description Non-singular terms in the series expansion of the elastic crack-tip stress fields, commonly referred to as the T-stress. The T-stress is as an additional stress field characterizing parameter to stress intensity factor (K) in the analysis of cracked bodies. T-stress is used as an important constraint parameter in the fracture analysis. In this investigation, three-dimensional finite element analyses have been conducted to compute the elastic T-stress considering a single edge notched tensile (SENT) specimen with varied thickness and a/W ratio. The results indicate that the T-stress depends on the specimen thickness and significantly varies along the crackfront from surface to centre of the specimen. The T-stress results obtained in the present analysis together with corresponding KI values can be used for analysis of constraint effects in a fracture specimen.
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institution Kabale University
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series Fracture and Structural Integrity
spelling doaj-art-6fa30598e24b461986a45683de5262992025-02-03T00:45:30ZengGruppo Italiano FratturaFracture and Structural Integrity1971-89932009-04-01384551Variation of stress intensity factor and elastic T-stress along the crack-front in finite thickness platesS. K. KudariK. G. KodanchaNon-singular terms in the series expansion of the elastic crack-tip stress fields, commonly referred to as the T-stress. The T-stress is as an additional stress field characterizing parameter to stress intensity factor (K) in the analysis of cracked bodies. T-stress is used as an important constraint parameter in the fracture analysis. In this investigation, three-dimensional finite element analyses have been conducted to compute the elastic T-stress considering a single edge notched tensile (SENT) specimen with varied thickness and a/W ratio. The results indicate that the T-stress depends on the specimen thickness and significantly varies along the crackfront from surface to centre of the specimen. The T-stress results obtained in the present analysis together with corresponding KI values can be used for analysis of constraint effects in a fracture specimen.http://www.gruppofrattura.it/pdf/rivista/numero8/numero_8_art_4.pdfElastic T-stressStress intensity factorFinite element methodConstraint issue
spellingShingle S. K. Kudari
K. G. Kodancha
Variation of stress intensity factor and elastic T-stress along the crack-front in finite thickness plates
Fracture and Structural Integrity
Elastic T-stress
Stress intensity factor
Finite element method
Constraint issue
title Variation of stress intensity factor and elastic T-stress along the crack-front in finite thickness plates
title_full Variation of stress intensity factor and elastic T-stress along the crack-front in finite thickness plates
title_fullStr Variation of stress intensity factor and elastic T-stress along the crack-front in finite thickness plates
title_full_unstemmed Variation of stress intensity factor and elastic T-stress along the crack-front in finite thickness plates
title_short Variation of stress intensity factor and elastic T-stress along the crack-front in finite thickness plates
title_sort variation of stress intensity factor and elastic t stress along the crack front in finite thickness plates
topic Elastic T-stress
Stress intensity factor
Finite element method
Constraint issue
url http://www.gruppofrattura.it/pdf/rivista/numero8/numero_8_art_4.pdf
work_keys_str_mv AT skkudari variationofstressintensityfactorandelastictstressalongthecrackfrontinfinitethicknessplates
AT kgkodancha variationofstressintensityfactorandelastictstressalongthecrackfrontinfinitethicknessplates