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      Increased Durability of Concrete Made with Fine Recycled Concrete Aggregates Using Superplasticizers

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          Abstract

          This paper evaluates the influence of two superplasticizers (SP) on the durability properties of concrete made with fine recycled concrete aggregate (FRCA). For this purpose, three families of concrete were tested: concrete without SP, concrete made with a regular superplasticizer and concrete made with a high-performance superplasticizer. Five volumetric replacement ratios of natural sand by FRCA were tested: 0%, 10%, 30%, 50% and 100%. Two natural gravels were used as coarse aggregates. All mixes had the same particle size distribution, cement content and amount of superplasticizer. The w/c ratio was calibrated to obtain similar slump. The results showed that the incorporation of FRCA increased the water absorption by immersion, the water absorption by capillary action, the carbonation depth and the chloride migration coefficient, while the use of superplasticizers highly improved these properties. The incorporation of FRCA jeopardized the SP’s effectiveness. This research demonstrated that, from a durability point of view, the simultaneous incorporation of FRCA and high-performance SP is a viable sustainable solution for structural concrete production.

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          Industrially interesting approaches to “low-CO2” cements

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            Influence of amount of recycled coarse aggregates and production process on properties of recycled aggregate concrete

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              Mechanical behaviour of concrete made with fine recycled concrete aggregates

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                Author and article information

                Contributors
                Role: Academic Editor
                Journal
                Materials (Basel)
                Materials (Basel)
                materials
                Materials
                MDPI
                1996-1944
                08 February 2016
                February 2016
                : 9
                : 2
                : 98
                Affiliations
                [1 ]CERIS/ICIST, DECivil-Instituto Superior Técnico (IST), University of Lisbon, Av. Rovisco Pais, Lisbon 1049-001, Portugal; francisco.cartuxo@ 123456gmail.com (F.C.); jb@ 123456civil.ist.utl.pt (J.B.)
                [2 ]CERIS/ICIST, ADEC-ISEL, Lisbon’s Polytechnic Institute, R. Conselheiro Emídio Navarro, 1, Lisbon 1950-062, Portugal; evangelista@ 123456dec.isel.ipl.pt
                [3 ]Construction Engineering Area, EPS de BELMEZ, University of Córdoba, Belmez CP 14240, Spain; efledesma@ 123456uco.es
                [4 ]Construction Engineering Area, University of Córdoba, Ed, Leonardo Da Vinci, Campus de Rabanales, Ctra. N-IV, km-396, Córdoba CP 14014, Spain
                Author notes
                [* ]Correspondence: jrjimenez@ 123456uco.es ; Tel.: +34-667524702; Fax: +34-957218550
                [†]

                These authors contributed equally to this work.

                Article
                materials-09-00098
                10.3390/ma9020098
                5456471
                a9ea13fe-98aa-4dac-ab8b-7b932d74bdc3
                © 2016 by the authors.

                Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons by Attribution (CC-BY) license ( http://creativecommons.org/licenses/by/4.0/).

                History
                : 11 December 2015
                : 27 January 2016
                Categories
                Article

                fine recycled aggregate,superplasticizers,durability,water absorption,chloride resistance,carbonation resistance

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