Residual stresses caused by static and dynamic contact interaction of composite plate and steel spherical indenter

A new approach has been developed and implemented to determine the main components of residual stresses that arise as a result of the contact interaction of a spherical indenter and a flat surface of composite plate made. The experimental technique includes drilling a probe hole and measuring the in...

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Main Authors: Sviatoslav Eleonsky, Vladimir Pisarev
Format: Article
Language:English
Published: Gruppo Italiano Frattura 2025-01-01
Series:Fracture and Structural Integrity
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Online Access:https://www.fracturae.com/index.php/fis/article/view/5230/4158
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author Sviatoslav Eleonsky
Vladimir Pisarev
author_facet Sviatoslav Eleonsky
Vladimir Pisarev
author_sort Sviatoslav Eleonsky
collection DOAJ
description A new approach has been developed and implemented to determine the main components of residual stresses that arise as a result of the contact interaction of a spherical indenter and a flat surface of composite plate made. The experimental technique includes drilling a probe hole and measuring the increments of the diameters of this hole in the direction of the principal residual deformations by speckle interferometry. The high-quality interference fringe patterns essential for the implementation of this procedure are visualized both inside and outside the contact dimple. Data from interference measurements of in-plane displacement components are used to determine the principal components of residual stresses based on the unequivocally solution to the properly posed inverse problem. This procedure provides minimal possible errors inherent in a determination of residual stress components by measurements of local deformation response to small hole drilling in orthotropic plate. The presented studies were carried out both for static and dynamic application of contact indentation of a spherical indenter into a flat surface of samples made of laminated carbon fiber material with cross-ply stacking sequence. It is shown that the values of residual stresses, unlike indirect parameters, are a parameter that can be used to establish a correlation between the results of residual strength tests and the quantitative characteristics of the residual stress field in the vicinity of the contact dimple
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spelling doaj-art-a8363c063e6b4e28921e06e96540ae502025-01-03T08:51:16ZengGruppo Italiano FratturaFracture and Structural Integrity1971-89932025-01-01197124626210.3221/IGF-ESIS.71.1810.3221/IGF-ESIS.71.18Residual stresses caused by static and dynamic contact interaction of composite plate and steel spherical indenterSviatoslav EleonskyVladimir PisarevA new approach has been developed and implemented to determine the main components of residual stresses that arise as a result of the contact interaction of a spherical indenter and a flat surface of composite plate made. The experimental technique includes drilling a probe hole and measuring the increments of the diameters of this hole in the direction of the principal residual deformations by speckle interferometry. The high-quality interference fringe patterns essential for the implementation of this procedure are visualized both inside and outside the contact dimple. Data from interference measurements of in-plane displacement components are used to determine the principal components of residual stresses based on the unequivocally solution to the properly posed inverse problem. This procedure provides minimal possible errors inherent in a determination of residual stress components by measurements of local deformation response to small hole drilling in orthotropic plate. The presented studies were carried out both for static and dynamic application of contact indentation of a spherical indenter into a flat surface of samples made of laminated carbon fiber material with cross-ply stacking sequence. It is shown that the values of residual stresses, unlike indirect parameters, are a parameter that can be used to establish a correlation between the results of residual strength tests and the quantitative characteristics of the residual stress field in the vicinity of the contact dimplehttps://www.fracturae.com/index.php/fis/article/view/5230/4158composite materialscontact interactionimpact damageresidual stresseshole drilling methodspeckle-pattern interferometry
spellingShingle Sviatoslav Eleonsky
Vladimir Pisarev
Residual stresses caused by static and dynamic contact interaction of composite plate and steel spherical indenter
Fracture and Structural Integrity
composite materials
contact interaction
impact damage
residual stresses
hole drilling method
speckle-pattern interferometry
title Residual stresses caused by static and dynamic contact interaction of composite plate and steel spherical indenter
title_full Residual stresses caused by static and dynamic contact interaction of composite plate and steel spherical indenter
title_fullStr Residual stresses caused by static and dynamic contact interaction of composite plate and steel spherical indenter
title_full_unstemmed Residual stresses caused by static and dynamic contact interaction of composite plate and steel spherical indenter
title_short Residual stresses caused by static and dynamic contact interaction of composite plate and steel spherical indenter
title_sort residual stresses caused by static and dynamic contact interaction of composite plate and steel spherical indenter
topic composite materials
contact interaction
impact damage
residual stresses
hole drilling method
speckle-pattern interferometry
url https://www.fracturae.com/index.php/fis/article/view/5230/4158
work_keys_str_mv AT sviatoslaveleonsky residualstressescausedbystaticanddynamiccontactinteractionofcompositeplateandsteelsphericalindenter
AT vladimirpisarev residualstressescausedbystaticanddynamiccontactinteractionofcompositeplateandsteelsphericalindenter