Effects of internal expansion reactions on the mechanical properties of concrete.

Detalhes bibliográficos
Autor(a) principal: Lucena, Maria Eduarda Maia Ferreira Gomes
Data de Publicação: 2024
Tipo de documento: Dissertação
Idioma: por
Título da fonte: Biblioteca Digital de Teses e Dissertações da UNICAP
Texto Completo: http://tede2.unicap.br:8080/handle/tede/1862
Resumo: Among the various deleterious actions that can attack concrete elements is the alkali-aggregate reaction (AAR), which mainly affects the structures of dams, bridges and foundations, the most recurrent of which is the alkali-silica reaction (ASR). Due to the early deterioration of concrete in residential buildings and bridges in the Metropolitan Region of Recife, scientific studies have been carried out over the last decade to find out how this process works, with the aim of developing measures that can provide an acceptable level of performance and durability, in accordance with the regulations in use. One of the main challenges in predicting this phenomenon is understanding how the mechanical properties of concrete are affected, which is the subject of this research. In this master's research, samples made in the laboratory were tested to evaluate the ASR and its effect on the mechanical properties of the concrete samples. The tests carried out were compressive strength, static modulus of elasticity of the concrete and tensile strength, using different cements: CPIV and CPV. Visually, it was possible to identify some cracks on the surfaces of the samples and traces of silica gel. The values of the concrete's mechanical properties showed different results: the concrete's compressive strength was little reduced by the reaction. On the other hand, the static modulus of elasticity was significantly reduced by 35% and 38% for each cement respectively. The tensile strength was reduced by 9% and 30%, but these results must be analyzed carefully, given the conditions in which they were tested. Therefore, the method used to create artificial ASR proved to be effective and has the potential to be used in further ASR studies. The modulus of elasticity also proved to be the most suitable tool for detecting the presence of ASR.
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spelling Silva, Fernando Arthur NogueiraAzevedo, Antônio Augusto Costa deMonteiro, Eliana Cristina Barretohttp://lattes.cnpq.br/0560314601836379Lucena, Maria Eduarda Maia Ferreira Gomes2024-05-20T16:35:13Z2024-02-06LUCENA, Maria Eduarda Maia Ferreira Gomes. Effects of internal expansion reactions on the mechanical properties of concrete. 2024. 92 f. Dissertação (Mestrado) - Universidade Católica de Pernambuco. Programa de Pós-graduação em Engenharia Civil. Mestrado em Engenharia Civil, Recife, 2024.http://tede2.unicap.br:8080/handle/tede/1862Among the various deleterious actions that can attack concrete elements is the alkali-aggregate reaction (AAR), which mainly affects the structures of dams, bridges and foundations, the most recurrent of which is the alkali-silica reaction (ASR). Due to the early deterioration of concrete in residential buildings and bridges in the Metropolitan Region of Recife, scientific studies have been carried out over the last decade to find out how this process works, with the aim of developing measures that can provide an acceptable level of performance and durability, in accordance with the regulations in use. One of the main challenges in predicting this phenomenon is understanding how the mechanical properties of concrete are affected, which is the subject of this research. In this master's research, samples made in the laboratory were tested to evaluate the ASR and its effect on the mechanical properties of the concrete samples. The tests carried out were compressive strength, static modulus of elasticity of the concrete and tensile strength, using different cements: CPIV and CPV. Visually, it was possible to identify some cracks on the surfaces of the samples and traces of silica gel. The values of the concrete's mechanical properties showed different results: the concrete's compressive strength was little reduced by the reaction. On the other hand, the static modulus of elasticity was significantly reduced by 35% and 38% for each cement respectively. The tensile strength was reduced by 9% and 30%, but these results must be analyzed carefully, given the conditions in which they were tested. Therefore, the method used to create artificial ASR proved to be effective and has the potential to be used in further ASR studies. The modulus of elasticity also proved to be the most suitable tool for detecting the presence of ASR.Dentre as diversas ações deletérias que podem atacar os elementos de concreto está a reação álcaliagregado (RAA), que atinge principalmente as estruturas de barragens, pontes e fundações, sendo a mais recorrente a reação álcalis-sílica (RAS). Devido à deterioração precoce do concreto em edifícios residenciais e pontes na Região Metropolitana do Recife, na última década foram realizados estudos científicos para conhecer o funcionamento desse processo, com o objetivo de desenvolver medidas que possam proporcionar um nível de desempenho e durabilidade aceitável, de acordo com as normas vigentes. Um dos principais desafios na previsão deste fenómeno é compreender como as propriedades mecânicas do concreto são afetadas, o que constitui o tema deste estudo. Nesta pesquisa de mestrado, foram ensaiadas amostras feitas em laboratório em um estudo anterior para avaliar a RAS e o seu efeito nas propriedades mecânicas das amostras de concreto. Os ensaios realizados foram de resistência à compressão, módulo de elasticidade estático do concreto e resistência à tração, utilizando-se diferentes cimentos: CPIV e CPV. Visualmente, foi possível identificar algumas fissuras nas superfícies das amostras e vestígios de sílica gel. Os valores das propriedades mecânicas do concreto apresentaram resultados diferentes: a resistência à compressão do concreto foi pouco reduzida pela reação. Por outro lado, o módulo de elasticidade estático foi significativamente reduzido em 35% a 38% para cada cimento, respetivamente. A resistência à tração foi reduzida em 9% a 30%, mas estes resultados devem ser analisados com cuidado, dadas as condições em que foram ensaiados. Assim, o método utilizado para criar ASR artificial provou ser eficaz e tem potencial para ser utilizado em estudos posteriores de ASR. O módulo de elasticidade também se revelou a ferramenta mais adequada para detectar a presença de RAS.Submitted by Biblioteca Central (biblioteca@unicap.br) on 2024-05-20T16:35:13Z No. of bitstreams: 1 Ok_maria_eduarda_maia_ferreira_gomes_lucena.pdf: 4617903 bytes, checksum: 960e2d71f56b1df629812b2e4a105e08 (MD5)Made available in DSpace on 2024-05-20T16:35:13Z (GMT). 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dc.title.por.fl_str_mv Effects of internal expansion reactions on the mechanical properties of concrete.
title Effects of internal expansion reactions on the mechanical properties of concrete.
spellingShingle Effects of internal expansion reactions on the mechanical properties of concrete.
Lucena, Maria Eduarda Maia Ferreira Gomes
Dissertações
Concreto
Reação álcalis-agregado
Elasticidade
Dissertations
Concrete
Alkali-aggregate reaction
Elasticity
ENGENHARIAS::ENGENHARIA CIVIL
title_short Effects of internal expansion reactions on the mechanical properties of concrete.
title_full Effects of internal expansion reactions on the mechanical properties of concrete.
title_fullStr Effects of internal expansion reactions on the mechanical properties of concrete.
title_full_unstemmed Effects of internal expansion reactions on the mechanical properties of concrete.
title_sort Effects of internal expansion reactions on the mechanical properties of concrete.
author Lucena, Maria Eduarda Maia Ferreira Gomes
author_facet Lucena, Maria Eduarda Maia Ferreira Gomes
author_role author
dc.contributor.advisor1.fl_str_mv Silva, Fernando Arthur Nogueira
dc.contributor.referee1.fl_str_mv Azevedo, Antônio Augusto Costa de
dc.contributor.referee2.fl_str_mv Monteiro, Eliana Cristina Barreto
dc.contributor.authorLattes.fl_str_mv http://lattes.cnpq.br/0560314601836379
dc.contributor.author.fl_str_mv Lucena, Maria Eduarda Maia Ferreira Gomes
contributor_str_mv Silva, Fernando Arthur Nogueira
Azevedo, Antônio Augusto Costa de
Monteiro, Eliana Cristina Barreto
dc.subject.por.fl_str_mv Dissertações
Concreto
Reação álcalis-agregado
Elasticidade
topic Dissertações
Concreto
Reação álcalis-agregado
Elasticidade
Dissertations
Concrete
Alkali-aggregate reaction
Elasticity
ENGENHARIAS::ENGENHARIA CIVIL
dc.subject.eng.fl_str_mv Dissertations
Concrete
Alkali-aggregate reaction
Elasticity
dc.subject.cnpq.fl_str_mv ENGENHARIAS::ENGENHARIA CIVIL
description Among the various deleterious actions that can attack concrete elements is the alkali-aggregate reaction (AAR), which mainly affects the structures of dams, bridges and foundations, the most recurrent of which is the alkali-silica reaction (ASR). Due to the early deterioration of concrete in residential buildings and bridges in the Metropolitan Region of Recife, scientific studies have been carried out over the last decade to find out how this process works, with the aim of developing measures that can provide an acceptable level of performance and durability, in accordance with the regulations in use. One of the main challenges in predicting this phenomenon is understanding how the mechanical properties of concrete are affected, which is the subject of this research. In this master's research, samples made in the laboratory were tested to evaluate the ASR and its effect on the mechanical properties of the concrete samples. The tests carried out were compressive strength, static modulus of elasticity of the concrete and tensile strength, using different cements: CPIV and CPV. Visually, it was possible to identify some cracks on the surfaces of the samples and traces of silica gel. The values of the concrete's mechanical properties showed different results: the concrete's compressive strength was little reduced by the reaction. On the other hand, the static modulus of elasticity was significantly reduced by 35% and 38% for each cement respectively. The tensile strength was reduced by 9% and 30%, but these results must be analyzed carefully, given the conditions in which they were tested. Therefore, the method used to create artificial ASR proved to be effective and has the potential to be used in further ASR studies. The modulus of elasticity also proved to be the most suitable tool for detecting the presence of ASR.
publishDate 2024
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identifier_str_mv LUCENA, Maria Eduarda Maia Ferreira Gomes. Effects of internal expansion reactions on the mechanical properties of concrete. 2024. 92 f. Dissertação (Mestrado) - Universidade Católica de Pernambuco. Programa de Pós-graduação em Engenharia Civil. Mestrado em Engenharia Civil, Recife, 2024.
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