Theoretical models to predict the mechanical behavior of thick composite tubes

This paper shows theoretical models (analytical formulations) to predict the mechanical behavior of thick composite tubes and how some parameters can influence this behavior. Thus, firstly, it was developed the analytical formulations for a pressurized tube made of composite material with a single t...

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Main Authors: Volnei Tita, Mauricio Francisco Caliri Júnior, Ernesto Massaroppi Junior
Format: Article
Language:English
Published: Associação Brasileira de Metalurgia e Materiais (ABM); Associação Brasileira de Cerâmica (ABC); Associação Brasileira de Polímeros (ABPol) 2012-02-01
Series:Materials Research
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1516-14392012000100011
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spelling doaj-16d926cf220346058ac2d270110def892020-11-24T22:44:07ZengAssociação Brasileira de Metalurgia e Materiais (ABM); Associação Brasileira de Cerâmica (ABC); Associação Brasileira de Polímeros (ABPol)Materials Research1516-14392012-02-011517080Theoretical models to predict the mechanical behavior of thick composite tubesVolnei TitaMauricio Francisco Caliri JúniorErnesto Massaroppi JuniorThis paper shows theoretical models (analytical formulations) to predict the mechanical behavior of thick composite tubes and how some parameters can influence this behavior. Thus, firstly, it was developed the analytical formulations for a pressurized tube made of composite material with a single thick ply and only one lamination angle. For this case, the stress distribution and the displacement fields are investigated as function of different lamination angles and reinforcement volume fractions. The results obtained by the theoretical model are physic consistent and coherent with the literature information. After that, the previous formulations are extended in order to predict the mechanical behavior of a thick laminated tube. Both analytical formulations are implemented as a computational tool via Matlab code. The results obtained by the computational tool are compared to the finite element analyses, and the stress distribution is considered coherent. Moreover, the engineering computational tool is used to perform failure analysis, using different types of failure criteria, which identifies the damaged ply and the mode of failure.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1516-14392012000100011composite materialthick tubesanalytical formulationstress analysesfailure analysis
collection DOAJ
language English
format Article
sources DOAJ
author Volnei Tita
Mauricio Francisco Caliri Júnior
Ernesto Massaroppi Junior
spellingShingle Volnei Tita
Mauricio Francisco Caliri Júnior
Ernesto Massaroppi Junior
Theoretical models to predict the mechanical behavior of thick composite tubes
Materials Research
composite material
thick tubes
analytical formulation
stress analyses
failure analysis
author_facet Volnei Tita
Mauricio Francisco Caliri Júnior
Ernesto Massaroppi Junior
author_sort Volnei Tita
title Theoretical models to predict the mechanical behavior of thick composite tubes
title_short Theoretical models to predict the mechanical behavior of thick composite tubes
title_full Theoretical models to predict the mechanical behavior of thick composite tubes
title_fullStr Theoretical models to predict the mechanical behavior of thick composite tubes
title_full_unstemmed Theoretical models to predict the mechanical behavior of thick composite tubes
title_sort theoretical models to predict the mechanical behavior of thick composite tubes
publisher Associação Brasileira de Metalurgia e Materiais (ABM); Associação Brasileira de Cerâmica (ABC); Associação Brasileira de Polímeros (ABPol)
series Materials Research
issn 1516-1439
publishDate 2012-02-01
description This paper shows theoretical models (analytical formulations) to predict the mechanical behavior of thick composite tubes and how some parameters can influence this behavior. Thus, firstly, it was developed the analytical formulations for a pressurized tube made of composite material with a single thick ply and only one lamination angle. For this case, the stress distribution and the displacement fields are investigated as function of different lamination angles and reinforcement volume fractions. The results obtained by the theoretical model are physic consistent and coherent with the literature information. After that, the previous formulations are extended in order to predict the mechanical behavior of a thick laminated tube. Both analytical formulations are implemented as a computational tool via Matlab code. The results obtained by the computational tool are compared to the finite element analyses, and the stress distribution is considered coherent. Moreover, the engineering computational tool is used to perform failure analysis, using different types of failure criteria, which identifies the damaged ply and the mode of failure.
topic composite material
thick tubes
analytical formulation
stress analyses
failure analysis
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1516-14392012000100011
work_keys_str_mv AT volneitita theoreticalmodelstopredictthemechanicalbehaviorofthickcompositetubes
AT mauriciofranciscocalirijunior theoreticalmodelstopredictthemechanicalbehaviorofthickcompositetubes
AT ernestomassaroppijunior theoreticalmodelstopredictthemechanicalbehaviorofthickcompositetubes
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