THE INFLUENCE OF FIBER ORIENTATION ON ENGINEERING CONSTANTS OF LAMINATED COMPOSITES

A laminated composite is generally formed by stacking unidirectional laminas, with different fiber orientation angles, in the direction of the laminate thickness, in order to satisfy the design requirements. Fiber orientation influence is crucial on the composite laminate characteristics. The paper...

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Main Authors: Iuliana DUPIR (HUDIȘTEANU), Nicolae ȚĂRANU
Format: Article
Language:English
Published: Editura Academiei Oamenilor de Știință din România 2015-11-01
Series:Annals: Series on engineering sciences (Academy of Romanian Scientists)
Subjects:
Online Access:http://aos.ro/wp-content/anale/TVol7Nr2Art.3.pdf
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author Iuliana DUPIR (HUDIȘTEANU)
Nicolae ȚĂRANU
author_facet Iuliana DUPIR (HUDIȘTEANU)
Nicolae ȚĂRANU
author_sort Iuliana DUPIR (HUDIȘTEANU)
collection DOAJ
description A laminated composite is generally formed by stacking unidirectional laminas, with different fiber orientation angles, in the direction of the laminate thickness, in order to satisfy the design requirements. Fiber orientation influence is crucial on the composite laminate characteristics. The paper presents a study which analyzes the fiber orientation angles influence on the elastic behavior of the laminates. Therefore, the elastic engineering constants are determined for a generally orthotropic lamina and for a symmetric angle-ply laminate. The analytical results are represented by graphical distribution of the elastic engineering constants with respect to fiber orientation, for different fiber volume fractions.
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spelling doaj.art-5c999beaf667430e9c290ee8e5bdf0272022-12-21T20:39:48ZengEditura Academiei Oamenilor de Știință din RomâniaAnnals: Series on engineering sciences (Academy of Romanian Scientists)2066-69502066-85702015-11-01722740THE INFLUENCE OF FIBER ORIENTATION ON ENGINEERING CONSTANTS OF LAMINATED COMPOSITESIuliana DUPIR (HUDIȘTEANU)0Nicolae ȚĂRANU1Faculty of Civil Engineering and Building Services, Technical University “Gh. Asachi” of Iași, RomaniaTechnical University “Gh. Asachi” of Iași, Romania, Academy of Romanian Scientists A laminated composite is generally formed by stacking unidirectional laminas, with different fiber orientation angles, in the direction of the laminate thickness, in order to satisfy the design requirements. Fiber orientation influence is crucial on the composite laminate characteristics. The paper presents a study which analyzes the fiber orientation angles influence on the elastic behavior of the laminates. Therefore, the elastic engineering constants are determined for a generally orthotropic lamina and for a symmetric angle-ply laminate. The analytical results are represented by graphical distribution of the elastic engineering constants with respect to fiber orientation, for different fiber volume fractions.http://aos.ro/wp-content/anale/TVol7Nr2Art.3.pdfangle-ply laminategenerally orthotropic laminaengineering constantsfiber orientation anglesfiber volume fractions
spellingShingle Iuliana DUPIR (HUDIȘTEANU)
Nicolae ȚĂRANU
THE INFLUENCE OF FIBER ORIENTATION ON ENGINEERING CONSTANTS OF LAMINATED COMPOSITES
Annals: Series on engineering sciences (Academy of Romanian Scientists)
angle-ply laminate
generally orthotropic lamina
engineering constants
fiber orientation angles
fiber volume fractions
title THE INFLUENCE OF FIBER ORIENTATION ON ENGINEERING CONSTANTS OF LAMINATED COMPOSITES
title_full THE INFLUENCE OF FIBER ORIENTATION ON ENGINEERING CONSTANTS OF LAMINATED COMPOSITES
title_fullStr THE INFLUENCE OF FIBER ORIENTATION ON ENGINEERING CONSTANTS OF LAMINATED COMPOSITES
title_full_unstemmed THE INFLUENCE OF FIBER ORIENTATION ON ENGINEERING CONSTANTS OF LAMINATED COMPOSITES
title_short THE INFLUENCE OF FIBER ORIENTATION ON ENGINEERING CONSTANTS OF LAMINATED COMPOSITES
title_sort influence of fiber orientation on engineering constants of laminated composites
topic angle-ply laminate
generally orthotropic lamina
engineering constants
fiber orientation angles
fiber volume fractions
url http://aos.ro/wp-content/anale/TVol7Nr2Art.3.pdf
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