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    Mechanical and thermal properties of lightweight concrete produced with polyester-coated pumice aggregate

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    Publication date
    2023-08
    End of Embargo
    2024-06-20
    Author
    Bideci, A.
    Bideci, O.S.
    Ashour, Ashraf F.
    Keyword
    Lightweight concrete
    Pumice
    Polymer coating
    Strength
    Thermal conductivity
    Rights
    © 2023 Elsevier Ltd. All rights reserved. Reproduced in accordance with the publisher's self-archiving policy. This manuscript version is made available under the CC-BY-NC-ND 4.0 license.
    Peer-Reviewed
    Yes
    Open Access status
    embargoedAccess
    
    Metadata
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    Abstract
    With the technological advances in the field of building materials, there has been an increasing focus on the research of lightweight concrete made with coated aggregates for improving the durability of concrete. In this study, pumice aggregates were coated with cast-based polyester to obtain polymer-coated pumice aggregates (PCPA). Lightweight concretes were produced with different cement dosages (200, 250 and 300) and PCPAs at different ratios (0%, 50% and 100%). Physical properties, mechanical strength, thermal properties and internal structure analysis (SEM-EDS) of the produced concrete samples were performed. According to the RILEM functional classification of lightweight concrete, the test results showed that REF D300 and REF D250 dosage series are in the semi-load-bearing lightweight concrete class, and the other all series are in the insulation concrete class, and the produced concretes can be classified as lightweight insulation materials. It can also be used in non-load-bearing walls or as an alternative lightweight insulation material.
    URI
    http://hdl.handle.net/10454/19492
    Version
    Accepted manuscript
    Citation
    Bideci A, Bideci OS and Ashour A (2023) Mechanical and thermal properties of lightweight concrete produced with polyester-coated pumice aggregate. Construction and Building Materials. 394: 132204.
    Link to publisher’s version
    https://doi.org/10.1016/j.conbuildmat.2023.132204
    Type
    Article
    Notes
    The full-text of this article will be released for public view at the end of the publisher embargo on 20 June 2024.
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