A multiphysics numerical simulation of the curing process of a thermosetting polymer resin

Detalhes bibliográficos
Autor(a) principal: PAIVA, Vivianne Marie Bruère de Carvalho
Data de Publicação: 2018
Tipo de documento: Dissertação
Idioma: eng
Título da fonte: Repositório Institucional da UFPE
Texto Completo: https://repositorio.ufpe.br/handle/123456789/30609
Resumo: Quality issues represent a great deal of interest in the field of fibre-reinforced composites with thermosetting polymer matrix, where such concerns are derived from matrix heterogeneity, defects (bubbles and cracks, for instance) and fibre microbuckling. These group of composite materials undergoes a complex coupled thermal, chemical and mechanical phenomenon during curing of the polymer, enhanced by the exothermal behaviour of the thermosetting chemical reaction, which can lead to important gradients of degree of cure and change of properties in the materials, more specifically in thick composites. Numerical simulations were carried out on the commercial software COMSOL Multiphysics®, based on the Finite Element Method, for the investigation of the curing process of a thick LY 556 epoxy system by considering the chemical, thermal and mechanical couplings. The curing parameters and material properties, which evolve with the curing, were thus evaluated. Experimental tests were also performed in order to obtain epoxies with different levels and degree of cure gradients, by varying the temperature and the curing time for each sample. Agreements between numerical predictions, experimental data and previous numerical results reinforce the presented model and the promising capacity of the multiphysics simulation of the epoxies curing process.
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spelling PAIVA, Vivianne Marie Bruère de Carvalhohttp://lattes.cnpq.br/8315050867901045http://lattes.cnpq.br/5210533486699425BOUCHONNEAU, Nadège SophieJOCHUM, Christian2019-05-13T17:40:15Z2019-05-13T17:40:15Z2018-02-28https://repositorio.ufpe.br/handle/123456789/30609Quality issues represent a great deal of interest in the field of fibre-reinforced composites with thermosetting polymer matrix, where such concerns are derived from matrix heterogeneity, defects (bubbles and cracks, for instance) and fibre microbuckling. These group of composite materials undergoes a complex coupled thermal, chemical and mechanical phenomenon during curing of the polymer, enhanced by the exothermal behaviour of the thermosetting chemical reaction, which can lead to important gradients of degree of cure and change of properties in the materials, more specifically in thick composites. Numerical simulations were carried out on the commercial software COMSOL Multiphysics®, based on the Finite Element Method, for the investigation of the curing process of a thick LY 556 epoxy system by considering the chemical, thermal and mechanical couplings. The curing parameters and material properties, which evolve with the curing, were thus evaluated. Experimental tests were also performed in order to obtain epoxies with different levels and degree of cure gradients, by varying the temperature and the curing time for each sample. Agreements between numerical predictions, experimental data and previous numerical results reinforce the presented model and the promising capacity of the multiphysics simulation of the epoxies curing process.CAPESAs questões de qualidade representam um grande interesse no campo dos compósitos de matriz polimérica termoendurecível reforçados com fibras, onde tais preocupações são derivadas da heterogeneidade da matriz, defeitos (bolhas e trincas, por exemplo) e microflambagem das fibras. Este grupo de materiais compósitos sofre um complexo fenômeno térmico, químico e mecânico acoplado durante a cura do polímero, intensificado pelo comportamento exotérmico da reação química termoendurecível, o que pode levar a importantes gradientes do grau de cura e mudança de propriedades nos materiais, mais especificamente em compósitos espessos. Foram realizadas simulações numéricas no software comercial COMSOL Multiphysics®, baseado no Método dos Elementos Finitos, para a investigação do processo de cura de um sistema epóxi LY 556 espesso considerando os acoplamentos químicos, térmicos e mecânicos. Os parâmetros de cura e propriedades do material, que evoluem com a cura, foram assim avaliados. Ensaios experimentais para obter epóxis com diferentes níveis e gradientes de cura também foram realizados variando a temperatura e o tempo de cura para cada amostra. Concordâncias entre as previsões numéricas, dados experimentais e resultados numéricos anteriores reforçam o modelo apresentado e a capacidade promissora da simulação multifísica do processo de cura de epóxis.engUniversidade Federal de PernambucoPrograma de Pos Graduacao em Engenharia MecanicaUFPEBrasilAttribution-NonCommercial-NoDerivs 3.0 Brazilhttp://creativecommons.org/licenses/by-nc-nd/3.0/br/info:eu-repo/semantics/openAccessEngenharia MecânicaCuraMétodo dos Elementos FinitosSistema epóxi LY 556Simulação multifísicaA multiphysics numerical simulation of the curing process of a thermosetting polymer resininfo:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/masterThesismestradoreponame:Repositório Institucional da UFPEinstname:Universidade Federal de Pernambuco (UFPE)instacron:UFPETHUMBNAILDISSERTAÇÃO Vivianne Marie Bruère de Carvalho Paiva.pdf.jpgDISSERTAÇÃO Vivianne Marie Bruère de Carvalho Paiva.pdf.jpgGenerated Thumbnailimage/jpeg1167https://repositorio.ufpe.br/bitstream/123456789/30609/6/DISSERTA%c3%87%c3%83O%20Vivianne%20Marie%20Bru%c3%a8re%20de%20Carvalho%20Paiva.pdf.jpg208da5594221ad0e931a704f29cc1720MD56ORIGINALDISSERTAÇÃO Vivianne Marie Bruère de Carvalho Paiva.pdfDISSERTAÇÃO Vivianne Marie Bruère de Carvalho Paiva.pdfapplication/pdf10453967https://repositorio.ufpe.br/bitstream/123456789/30609/1/DISSERTA%c3%87%c3%83O%20Vivianne%20Marie%20Bru%c3%a8re%20de%20Carvalho%20Paiva.pdffbc719ab32924d9f1be7f5da594a11b2MD51LICENSElicense.txtlicense.txttext/plain; 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dc.title.pt_BR.fl_str_mv A multiphysics numerical simulation of the curing process of a thermosetting polymer resin
title A multiphysics numerical simulation of the curing process of a thermosetting polymer resin
spellingShingle A multiphysics numerical simulation of the curing process of a thermosetting polymer resin
PAIVA, Vivianne Marie Bruère de Carvalho
Engenharia Mecânica
Cura
Método dos Elementos Finitos
Sistema epóxi LY 556
Simulação multifísica
title_short A multiphysics numerical simulation of the curing process of a thermosetting polymer resin
title_full A multiphysics numerical simulation of the curing process of a thermosetting polymer resin
title_fullStr A multiphysics numerical simulation of the curing process of a thermosetting polymer resin
title_full_unstemmed A multiphysics numerical simulation of the curing process of a thermosetting polymer resin
title_sort A multiphysics numerical simulation of the curing process of a thermosetting polymer resin
author PAIVA, Vivianne Marie Bruère de Carvalho
author_facet PAIVA, Vivianne Marie Bruère de Carvalho
author_role author
dc.contributor.authorLattes.pt_BR.fl_str_mv http://lattes.cnpq.br/8315050867901045
dc.contributor.advisorLattes.pt_BR.fl_str_mv http://lattes.cnpq.br/5210533486699425
dc.contributor.author.fl_str_mv PAIVA, Vivianne Marie Bruère de Carvalho
dc.contributor.advisor1.fl_str_mv BOUCHONNEAU, Nadège Sophie
dc.contributor.advisor-co1.fl_str_mv JOCHUM, Christian
contributor_str_mv BOUCHONNEAU, Nadège Sophie
JOCHUM, Christian
dc.subject.por.fl_str_mv Engenharia Mecânica
Cura
Método dos Elementos Finitos
Sistema epóxi LY 556
Simulação multifísica
topic Engenharia Mecânica
Cura
Método dos Elementos Finitos
Sistema epóxi LY 556
Simulação multifísica
description Quality issues represent a great deal of interest in the field of fibre-reinforced composites with thermosetting polymer matrix, where such concerns are derived from matrix heterogeneity, defects (bubbles and cracks, for instance) and fibre microbuckling. These group of composite materials undergoes a complex coupled thermal, chemical and mechanical phenomenon during curing of the polymer, enhanced by the exothermal behaviour of the thermosetting chemical reaction, which can lead to important gradients of degree of cure and change of properties in the materials, more specifically in thick composites. Numerical simulations were carried out on the commercial software COMSOL Multiphysics®, based on the Finite Element Method, for the investigation of the curing process of a thick LY 556 epoxy system by considering the chemical, thermal and mechanical couplings. The curing parameters and material properties, which evolve with the curing, were thus evaluated. Experimental tests were also performed in order to obtain epoxies with different levels and degree of cure gradients, by varying the temperature and the curing time for each sample. Agreements between numerical predictions, experimental data and previous numerical results reinforce the presented model and the promising capacity of the multiphysics simulation of the epoxies curing process.
publishDate 2018
dc.date.issued.fl_str_mv 2018-02-28
dc.date.accessioned.fl_str_mv 2019-05-13T17:40:15Z
dc.date.available.fl_str_mv 2019-05-13T17:40:15Z
dc.type.status.fl_str_mv info:eu-repo/semantics/publishedVersion
dc.type.driver.fl_str_mv info:eu-repo/semantics/masterThesis
format masterThesis
status_str publishedVersion
dc.identifier.uri.fl_str_mv https://repositorio.ufpe.br/handle/123456789/30609
url https://repositorio.ufpe.br/handle/123456789/30609
dc.language.iso.fl_str_mv eng
language eng
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rights_invalid_str_mv Attribution-NonCommercial-NoDerivs 3.0 Brazil
http://creativecommons.org/licenses/by-nc-nd/3.0/br/
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dc.publisher.none.fl_str_mv Universidade Federal de Pernambuco
dc.publisher.program.fl_str_mv Programa de Pos Graduacao em Engenharia Mecanica
dc.publisher.initials.fl_str_mv UFPE
dc.publisher.country.fl_str_mv Brasil
publisher.none.fl_str_mv Universidade Federal de Pernambuco
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