Method for Determination of the Dynamic Elastic Modulus for Composite Materials

Majority of polymer matrix composite materials, a marked viscoelastic behavior and faculties of dissipation of energy, it thus proves necessary to know the viscoelastic properties, as the dynamic Young modulus. In this work, we will present a new experimental technique for determining the dynamic el...

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Main Authors: Abdellah MASSAQ, Alexis RUSINEK, Maciej KLÓSAK
Format: Article
Language:English
Published: Institute of Fundamental Technological Research 2013-12-01
Series:Engineering Transactions
Subjects:
Online Access:https://et.ippt.pan.pl/index.php/et/article/view/9
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author Abdellah MASSAQ
Alexis RUSINEK
Maciej KLÓSAK
author_facet Abdellah MASSAQ
Alexis RUSINEK
Maciej KLÓSAK
author_sort Abdellah MASSAQ
collection DOAJ
description Majority of polymer matrix composite materials, a marked viscoelastic behavior and faculties of dissipation of energy, it thus proves necessary to know the viscoelastic properties, as the dynamic Young modulus. In this work, we will present a new experimental technique for determining the dynamic elastic modulus at high strain rates of polymer matrix composites materials by a statistical method demanding a large number of tests. This new technique is based on the split Hopkinson pressure bar. Further, we study the effect of strain rate on dynamic elastic modulus of a woven Polyamid 6 – glass fibre reinforced.
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publishDate 2013-12-01
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series Engineering Transactions
spelling doaj-art-a08f342360f54ccc9a9dae23eda5fbb22025-07-11T04:54:49ZengInstitute of Fundamental Technological ResearchEngineering Transactions0867-888X2450-80712013-12-0161410.24423/engtrans.9.2013Method for Determination of the Dynamic Elastic Modulus for Composite MaterialsAbdellah MASSAQ0Alexis RUSINEK1Maciej KLÓSAK21) Ecole Nationale des Sciences Appliquées, Guéliz-Marrakech 2) IbnoZohr University, Faculty of Sciences Agadir, AgadirNational Engineering School of Metz ENIM Laboratory of Mechanics, Biomechanics, Polymers and Structures – LaBPS, Metz1) Universiapolis, Ecole Polytechnique d’Agadir, Agadir; 2) The State School of Higher Professional Education in Kalisz, KaliszMajority of polymer matrix composite materials, a marked viscoelastic behavior and faculties of dissipation of energy, it thus proves necessary to know the viscoelastic properties, as the dynamic Young modulus. In this work, we will present a new experimental technique for determining the dynamic elastic modulus at high strain rates of polymer matrix composites materials by a statistical method demanding a large number of tests. This new technique is based on the split Hopkinson pressure bar. Further, we study the effect of strain rate on dynamic elastic modulus of a woven Polyamid 6 – glass fibre reinforced.https://et.ippt.pan.pl/index.php/et/article/view/9compositedynamic Young modulusHopkinson barhigh strain rate
spellingShingle Abdellah MASSAQ
Alexis RUSINEK
Maciej KLÓSAK
Method for Determination of the Dynamic Elastic Modulus for Composite Materials
Engineering Transactions
composite
dynamic Young modulus
Hopkinson bar
high strain rate
title Method for Determination of the Dynamic Elastic Modulus for Composite Materials
title_full Method for Determination of the Dynamic Elastic Modulus for Composite Materials
title_fullStr Method for Determination of the Dynamic Elastic Modulus for Composite Materials
title_full_unstemmed Method for Determination of the Dynamic Elastic Modulus for Composite Materials
title_short Method for Determination of the Dynamic Elastic Modulus for Composite Materials
title_sort method for determination of the dynamic elastic modulus for composite materials
topic composite
dynamic Young modulus
Hopkinson bar
high strain rate
url https://et.ippt.pan.pl/index.php/et/article/view/9
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AT alexisrusinek methodfordeterminationofthedynamicelasticmodulusforcompositematerials
AT maciejklosak methodfordeterminationofthedynamicelasticmodulusforcompositematerials