The effect of low-cycle fatigue on evolution of fracture mechanics parameters in residual stress field caused by cold hole expansion

Localized displacement measurements based on electronic speckle-pattern interferometry are used to obtain crack mouth opening displacement (CMOD), stress intensity factor (SIF) and T-stress values during crack growth around cold-expanded holes. The specimens with a central open hole are made from 20...

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Main Authors: Yu. G. Matvienko, V.S. Pisarev, S. I. Eleonsky
Format: Article
Language:English
Published: Gruppo Italiano Frattura 2019-01-01
Series:Fracture and Structural Integrity
Subjects:
Online Access:http://www.gruppofrattura.it/pdf/rivista/numero47/numero_47_art_23.pdf
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author Yu. G. Matvienko
V.S. Pisarev
S. I. Eleonsky
author_facet Yu. G. Matvienko
V.S. Pisarev
S. I. Eleonsky
author_sort Yu. G. Matvienko
collection DOAJ
description Localized displacement measurements based on electronic speckle-pattern interferometry are used to obtain crack mouth opening displacement (CMOD), stress intensity factor (SIF) and T-stress values during crack growth around cold-expanded holes. The specimens with a central open hole are made from 2024 aluminium alloy. The expansion level is 5% of nominal interference. The results are obtained for the same stress range ??? = 350 MPa, but different stress ratio R = 0.4 and R = �1.0. A sequence of narrow notches, inserted under the constant external load, serves for crack modelling at different stages of cyclic loading. Initial experimental data represent in-plane displacement component values measured in the vicinity of the crack tip. The transition from in-plane displacement components to SIF and T-stress values follows from the relationships of modified version of the crack compliance method. The crack length curves of CMOD, SIF and Tstress profiles are obtained for different stages of cyclic loading. These data provide the construction of dependencies of fracture mechanics parameters for cracks of fixed lengths from the loading cycle number
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institution Kabale University
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publishDate 2019-01-01
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series Fracture and Structural Integrity
spelling doaj-art-822fef6724ca4c7eb00aeb28b7b1760d2025-01-03T01:40:41ZengGruppo Italiano FratturaFracture and Structural Integrity1971-89932019-01-01134730332010.3221/IGF-ESIS.47.2310.3221/IGF-ESIS.47.23The effect of low-cycle fatigue on evolution of fracture mechanics parameters in residual stress field caused by cold hole expansionYu. G. MatvienkoV.S. PisarevS. I. EleonskyLocalized displacement measurements based on electronic speckle-pattern interferometry are used to obtain crack mouth opening displacement (CMOD), stress intensity factor (SIF) and T-stress values during crack growth around cold-expanded holes. The specimens with a central open hole are made from 2024 aluminium alloy. The expansion level is 5% of nominal interference. The results are obtained for the same stress range ??? = 350 MPa, but different stress ratio R = 0.4 and R = �1.0. A sequence of narrow notches, inserted under the constant external load, serves for crack modelling at different stages of cyclic loading. Initial experimental data represent in-plane displacement component values measured in the vicinity of the crack tip. The transition from in-plane displacement components to SIF and T-stress values follows from the relationships of modified version of the crack compliance method. The crack length curves of CMOD, SIF and Tstress profiles are obtained for different stages of cyclic loading. These data provide the construction of dependencies of fracture mechanics parameters for cracks of fixed lengths from the loading cycle numberhttp://www.gruppofrattura.it/pdf/rivista/numero47/numero_47_art_23.pdfCold expansion Crack growth Crack mouth opening displacement Stress intensity factor T-stress
spellingShingle Yu. G. Matvienko
V.S. Pisarev
S. I. Eleonsky
The effect of low-cycle fatigue on evolution of fracture mechanics parameters in residual stress field caused by cold hole expansion
Fracture and Structural Integrity
Cold expansion
Crack growth
Crack mouth opening displacement
Stress intensity factor
T-stress
title The effect of low-cycle fatigue on evolution of fracture mechanics parameters in residual stress field caused by cold hole expansion
title_full The effect of low-cycle fatigue on evolution of fracture mechanics parameters in residual stress field caused by cold hole expansion
title_fullStr The effect of low-cycle fatigue on evolution of fracture mechanics parameters in residual stress field caused by cold hole expansion
title_full_unstemmed The effect of low-cycle fatigue on evolution of fracture mechanics parameters in residual stress field caused by cold hole expansion
title_short The effect of low-cycle fatigue on evolution of fracture mechanics parameters in residual stress field caused by cold hole expansion
title_sort effect of low cycle fatigue on evolution of fracture mechanics parameters in residual stress field caused by cold hole expansion
topic Cold expansion
Crack growth
Crack mouth opening displacement
Stress intensity factor
T-stress
url http://www.gruppofrattura.it/pdf/rivista/numero47/numero_47_art_23.pdf
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