Experimental investigation of residual strain formation mechanisms in composite laminates under cycling loading

Cycling tension tests of the specimens from symmetric angle-ply laminate based on ELUR-P unidirectional carbon fiber and XT-118 cold-hardening epoxy have been carried out. Using the obtained experimental results, the process of residual strains formation has been investigated and qualitatively analy...

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Main Authors: V.N. Paimushin, S.A. Kholmogorov, R.A. Kayumov
Format: Article
Language:English
Published: Kazan Federal University 2017-12-01
Series:Учёные записки Казанского университета: Серия Физико-математические науки
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Online Access:https://kpfu.ru/experimental-investigation-of-residual-strain_336188.html
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author V.N. Paimushin
S.A. Kholmogorov
R.A. Kayumov
author_facet V.N. Paimushin
S.A. Kholmogorov
R.A. Kayumov
author_sort V.N. Paimushin
collection DOAJ
description Cycling tension tests of the specimens from symmetric angle-ply laminate based on ELUR-P unidirectional carbon fiber and XT-118 cold-hardening epoxy have been carried out. Using the obtained experimental results, the process of residual strains formation has been investigated and qualitatively analyzed. It has been shown that there is such a level of ultimate stress in cycling loading conditions for the composite under investigation in the principal material axes, below which stabilization of the strain increment parameter at each loading cycle occurs. A method has been developed for determining the residual strains at each loading cycle by introducing the secant moduli of elasticity in the loading and unloading paths and their determination from the stress-strain curve. For several loading rates, which differ significantly from each other, the experimental dependencies of secant moduli formed in the loading and unloading paths on the cycle number have been obtained. A method has been proposed, which allows to isolate a viscoelastic component from the total strain accumulated during the cycling loading. This is specified by the epoxy creeping in the shear conditions. It has been found that the total strain for the fiber reinforced plastics under consideration can be represented as a sum of the viscoelastic part, which is recoverable over time, and the residual strain, which is probably associated with unrecoverable structural changes in the composite.
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spelling doaj.art-85c5e11d0ea841b6a85958847c3351602024-12-02T07:42:06ZengKazan Federal UniversityУчёные записки Казанского университета: Серия Физико-математические науки2541-77462500-21982017-12-011594473492Experimental investigation of residual strain formation mechanisms in composite laminates under cycling loadingV.N. Paimushin0S.A. Kholmogorov1R.A. Kayumov2Tupolev Kazan National Research Technical University, Kazan, 420111 Russia; Kazan Federal University, Kazan, 420008 RussiaTupolev Kazan National Research Technical University, Kazan, 420111 RussiaKazan State University of Architecture and Engineering, Kazan, 420043 RussiaCycling tension tests of the specimens from symmetric angle-ply laminate based on ELUR-P unidirectional carbon fiber and XT-118 cold-hardening epoxy have been carried out. Using the obtained experimental results, the process of residual strains formation has been investigated and qualitatively analyzed. It has been shown that there is such a level of ultimate stress in cycling loading conditions for the composite under investigation in the principal material axes, below which stabilization of the strain increment parameter at each loading cycle occurs. A method has been developed for determining the residual strains at each loading cycle by introducing the secant moduli of elasticity in the loading and unloading paths and their determination from the stress-strain curve. For several loading rates, which differ significantly from each other, the experimental dependencies of secant moduli formed in the loading and unloading paths on the cycle number have been obtained. A method has been proposed, which allows to isolate a viscoelastic component from the total strain accumulated during the cycling loading. This is specified by the epoxy creeping in the shear conditions. It has been found that the total strain for the fiber reinforced plastics under consideration can be represented as a sum of the viscoelastic part, which is recoverable over time, and the residual strain, which is probably associated with unrecoverable structural changes in the composite.https://kpfu.ru/experimental-investigation-of-residual-strain_336188.htmlunidirectional carbon fiber reinforced plasticangle-ply laminatespecimencycling tensionunloadingsecant modulus of elasticityresidual straincreep strainadaptabilityunconvertible component of strainviscoelastic convertible component of strain
spellingShingle V.N. Paimushin
S.A. Kholmogorov
R.A. Kayumov
Experimental investigation of residual strain formation mechanisms in composite laminates under cycling loading
Учёные записки Казанского университета: Серия Физико-математические науки
unidirectional carbon fiber reinforced plastic
angle-ply laminate
specimen
cycling tension
unloading
secant modulus of elasticity
residual strain
creep strain
adaptability
unconvertible component of strain
viscoelastic convertible component of strain
title Experimental investigation of residual strain formation mechanisms in composite laminates under cycling loading
title_full Experimental investigation of residual strain formation mechanisms in composite laminates under cycling loading
title_fullStr Experimental investigation of residual strain formation mechanisms in composite laminates under cycling loading
title_full_unstemmed Experimental investigation of residual strain formation mechanisms in composite laminates under cycling loading
title_short Experimental investigation of residual strain formation mechanisms in composite laminates under cycling loading
title_sort experimental investigation of residual strain formation mechanisms in composite laminates under cycling loading
topic unidirectional carbon fiber reinforced plastic
angle-ply laminate
specimen
cycling tension
unloading
secant modulus of elasticity
residual strain
creep strain
adaptability
unconvertible component of strain
viscoelastic convertible component of strain
url https://kpfu.ru/experimental-investigation-of-residual-strain_336188.html
work_keys_str_mv AT vnpaimushin experimentalinvestigationofresidualstrainformationmechanismsincompositelaminatesundercyclingloading
AT sakholmogorov experimentalinvestigationofresidualstrainformationmechanismsincompositelaminatesundercyclingloading
AT rakayumov experimentalinvestigationofresidualstrainformationmechanismsincompositelaminatesundercyclingloading