Identification of elasticity modulus by vibratory analysis (Application to a natural composite: Aleppo pine wood)

In this paper, we present a method for the determination of the elasticity modulus in the vibratory domain of materials. This approach is based on research and interpretation of the spectrum of natural frequencies resulting from natural vibrations based on the theory of elastic beams. The tests cons...

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Main Authors: DAOUI Abdelhakim, ZERIZER Abdellatif
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Subjects:
Online Access:https://doi.org/10.1051/matecconf/201714901045
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author DAOUI Abdelhakim
ZERIZER Abdellatif
author_facet DAOUI Abdelhakim
ZERIZER Abdellatif
author_sort DAOUI Abdelhakim
collection DOAJ
description In this paper, we present a method for the determination of the elasticity modulus in the vibratory domain of materials. This approach is based on research and interpretation of the spectrum of natural frequencies resulting from natural vibrations based on the theory of elastic beams. The tests consist of classical tests of longitudinal vibrations of natural composite beams (Aleppo pine wood), long enough to observe some natural frequencies. This identification method showed a good correlation between the theoretical and experimental values, notably the evaluation of the modal parameter for the case of the resonant frequencies and the identification of the modulus of elasticity of the materials used.
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spelling doaj.art-b17342ee73194faa9182deb8aba33dbd2022-12-21T22:10:44ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-011490104510.1051/matecconf/201714901045matecconf_cmss2018_01045Identification of elasticity modulus by vibratory analysis (Application to a natural composite: Aleppo pine wood)DAOUI AbdelhakimZERIZER AbdellatifIn this paper, we present a method for the determination of the elasticity modulus in the vibratory domain of materials. This approach is based on research and interpretation of the spectrum of natural frequencies resulting from natural vibrations based on the theory of elastic beams. The tests consist of classical tests of longitudinal vibrations of natural composite beams (Aleppo pine wood), long enough to observe some natural frequencies. This identification method showed a good correlation between the theoretical and experimental values, notably the evaluation of the modal parameter for the case of the resonant frequencies and the identification of the modulus of elasticity of the materials used.https://doi.org/10.1051/matecconf/201714901045analyse vibratoireacquisition de donnéesmodule d’élasticitéfréquence de résonancethéorie des poutres élastiques
spellingShingle DAOUI Abdelhakim
ZERIZER Abdellatif
Identification of elasticity modulus by vibratory analysis (Application to a natural composite: Aleppo pine wood)
MATEC Web of Conferences
analyse vibratoire
acquisition de données
module d’élasticité
fréquence de résonance
théorie des poutres élastiques
title Identification of elasticity modulus by vibratory analysis (Application to a natural composite: Aleppo pine wood)
title_full Identification of elasticity modulus by vibratory analysis (Application to a natural composite: Aleppo pine wood)
title_fullStr Identification of elasticity modulus by vibratory analysis (Application to a natural composite: Aleppo pine wood)
title_full_unstemmed Identification of elasticity modulus by vibratory analysis (Application to a natural composite: Aleppo pine wood)
title_short Identification of elasticity modulus by vibratory analysis (Application to a natural composite: Aleppo pine wood)
title_sort identification of elasticity modulus by vibratory analysis application to a natural composite aleppo pine wood
topic analyse vibratoire
acquisition de données
module d’élasticité
fréquence de résonance
théorie des poutres élastiques
url https://doi.org/10.1051/matecconf/201714901045
work_keys_str_mv AT daouiabdelhakim identificationofelasticitymodulusbyvibratoryanalysisapplicationtoanaturalcompositealeppopinewood
AT zerizerabdellatif identificationofelasticitymodulusbyvibratoryanalysisapplicationtoanaturalcompositealeppopinewood