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    Papers in International JournalsChapters/ Papers in International BooksChapters/ Papers in National BooksCommunications in International ConferencesCommunications in National ConferencesMSc ThesesBooksProceedingsPatentsTechnical/ Scientific ReportsPhD Theses
    @article {1741,
    	title = {Bet{\~o}es de elevado desempenho com nano-part{\'\i}culas de TiO2 e cinzas volantes: Resist{\^e}ncia mec{\^a}nica, durabilidade e custo},
    	booktitle = {Revista de Engenharia Civil},
    	year = {2013},
    	month = {2013-12-08 00:00:00},
    	pages = {5-17},
    	publisher = {Universidade do Minho. Departamento de Engenharia Civil},
    	organization = {Universidade do Minho. Departamento de Engenharia Civil},
    	abstract = {

    Os bet{\~o}es de elevado desempenho apresentam vantagens v{\'a}rias sobre os bet{\~o}es correntes nomeadamente elevada resist{\^e}ncia e durabilidade. Estes materiais permitem a execu{\c c}{\~a}o de estruturas com menor quantidade de a{\c c}o e com uma vida {\'u}til superior, fatores cruciais para a eco-efici{\^e}ncia daquelas. Apesar disso as publica{\c c}{\~o}es sobre bet{\~o}es com nano-part{\'\i}culas s{\~a}o escassas, representando apenas 1\% do total de publica{\c c}{\~o}es em revista internacional sobre estes materiais. As publica{\c c}{\~o}es sobre bet{\~o}es de elevado desempenho com nano-part{\'\i}culas s{\~a}o ainda mais reduzidas. O presente artigo apresenta resultados de uma investiga{\c c}{\~a}o experimental sobre a resist{\^e}ncia mec{\^a}nica e a durabilidade de bet{\~o}es de elevado desempenho contendo nano-part{\'\i}culas de TiO2 e cinzas volantes. Os par{\^a}metros de durabilidade foram avaliados com recurso a ensaios de absor{\c c}{\~a}o de {\'a}gua por imers{\~a}o e por capilaridade, ensaios de ultra-sons, resistividade el{\'e}trica, difus{\~a}o de cloretos e resist{\^e}ncia ao ataque qu{\'\i}mico. Os resultados mostram que bet{\~o}es com um teor crescente de nano-part{\'\i}culas de TiO2 evidenciam uma redu{\c c}{\~a}o da durabilidade. Mostram tamb{\'e}m que bet{\~o}es com 1\% de nano-part{\'\i}culas de TiO2 e substitui{\c c}{\~a}o parcial de cimento Portland por 30\% de cinzas volantes apresentam uma elevada resist{\^e}ncia mec{\^a}nica (C55/C67) a par de uma elevada durabilidade. Contudo as nano-part{\'\i}culas de TiO2 agravam de forma muito significativa o custo dos bet{\~o}es.

    }, keywords = {Bet{\~o}es de elevado desempenho, Nano-part{\'\i}culas, Resist{\^e}ncia mec{\^a}nica, TIO2}, issn = {0873-1152}, author = {Martins, T. and Pacheco-Torgal, F. and Aguiar, J. B. and Jesus, C. M. G.} }

    About CTAC

    The Centre for Territory, Environment and Construction (CTAC) is a research unit of the School of Engineering of University of Minho (UMinho), recognised by the “FCT – Fundação para a Ciência e Tecnologia” (Foundation for Science and Technology), associated to the Department of Civil Engineering (DEC), with whom it shares resources and namely human resources.

    Currently CTAC aggregates 25 researchers holding a PhD of which 20 are faculty professors of the Civil Engineering Department. Read more


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    Centro de Território, Ambiente e Construção
    Escola de Engenharia da Universidade do Minho
    Campus de Azurém
    4800-058 Guimarães, Portugal

    Phone: + 351 253 510 200 (517 206)
    Fax: + 351 253 510 217

    Email: geral@ctac.uminho.pt


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