Prediction of longitudinal modulus of aligned discontinuous fiber-reinforced composites using boundary element method

In this study, the boundary element method is presented for the prediction of longitudinal modulus of aligned discontinuous fiber-reinforced composites. The details of the boundary element formulation model covering infinite friction (stick) contact conditions are given. Both fiber and matrix materi...

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Main Authors: Gun Halit, Kose Gorkem
Format: Article
Language:English
Published: De Gruyter 2014-03-01
Series:Science and Engineering of Composite Materials
Subjects:
Online Access:https://doi.org/10.1515/secm-2013-0055
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spelling doaj-bc77e7f46f55441dacb602e84142db722021-09-05T14:00:28ZengDe GruyterScience and Engineering of Composite Materials0792-12332191-03592014-03-0121221922110.1515/secm-2013-0055Prediction of longitudinal modulus of aligned discontinuous fiber-reinforced composites using boundary element methodGun Halit0Kose Gorkem1Department of Mechanical Engineering, Usak University, Usak 64200, TurkeyGraduate School of Natural and Applied Science, Usak University, Usak, TurkeyIn this study, the boundary element method is presented for the prediction of longitudinal modulus of aligned discontinuous fiber-reinforced composites. The details of the boundary element formulation model covering infinite friction (stick) contact conditions are given. Both fiber and matrix materials are assumed to display linear elastic material behavior. The formulation is applied to boron/epoxy discontinuous fiber-reinforced composites. The computed results show a very good agreement with the modified Cox model and the finite element analysis with experimental data.https://doi.org/10.1515/secm-2013-0055boundary elementdiscontinuous fiber-reinforced compositeslongitudinal modulus
collection DOAJ
language English
format Article
sources DOAJ
author Gun Halit
Kose Gorkem
spellingShingle Gun Halit
Kose Gorkem
Prediction of longitudinal modulus of aligned discontinuous fiber-reinforced composites using boundary element method
Science and Engineering of Composite Materials
boundary element
discontinuous fiber-reinforced composites
longitudinal modulus
author_facet Gun Halit
Kose Gorkem
author_sort Gun Halit
title Prediction of longitudinal modulus of aligned discontinuous fiber-reinforced composites using boundary element method
title_short Prediction of longitudinal modulus of aligned discontinuous fiber-reinforced composites using boundary element method
title_full Prediction of longitudinal modulus of aligned discontinuous fiber-reinforced composites using boundary element method
title_fullStr Prediction of longitudinal modulus of aligned discontinuous fiber-reinforced composites using boundary element method
title_full_unstemmed Prediction of longitudinal modulus of aligned discontinuous fiber-reinforced composites using boundary element method
title_sort prediction of longitudinal modulus of aligned discontinuous fiber-reinforced composites using boundary element method
publisher De Gruyter
series Science and Engineering of Composite Materials
issn 0792-1233
2191-0359
publishDate 2014-03-01
description In this study, the boundary element method is presented for the prediction of longitudinal modulus of aligned discontinuous fiber-reinforced composites. The details of the boundary element formulation model covering infinite friction (stick) contact conditions are given. Both fiber and matrix materials are assumed to display linear elastic material behavior. The formulation is applied to boron/epoxy discontinuous fiber-reinforced composites. The computed results show a very good agreement with the modified Cox model and the finite element analysis with experimental data.
topic boundary element
discontinuous fiber-reinforced composites
longitudinal modulus
url https://doi.org/10.1515/secm-2013-0055
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