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Performance of self‐compacting rubberized concrete against carbonation and chloride penetration
This study assessed the performance of self‐compacting rubberized concrete against carbonation and chloride penetration. In addition to fresh‐state and compressive strength tests, durability of the studied mixes was evaluated by measuring carbonation and chloride penetration depths, total porosity, and pores'size distribution. It was found that an increase in rubber content leads to a decrease in compressive strength. However, stadequate strength for structural applications was achieved up to an incorporation of 15% rubber by volume. As for durability, the presence of rubber was found to enhance performance against carbonation, but to worsen the resistance to chloride ion penetration.
Performance of self‐compacting rubberized concrete against carbonation and chloride penetration
This study assessed the performance of self‐compacting rubberized concrete against carbonation and chloride penetration. In addition to fresh‐state and compressive strength tests, durability of the studied mixes was evaluated by measuring carbonation and chloride penetration depths, total porosity, and pores'size distribution. It was found that an increase in rubber content leads to a decrease in compressive strength. However, stadequate strength for structural applications was achieved up to an incorporation of 15% rubber by volume. As for durability, the presence of rubber was found to enhance performance against carbonation, but to worsen the resistance to chloride ion penetration.
Performance of self‐compacting rubberized concrete against carbonation and chloride penetration
Mallek, Jihen (Autor:in) / Daoud, Atef (Autor:in) / Omikrine‐Metalssi, Othman (Autor:in) / Loulizi, Amara (Autor:in)
Structural Concrete ; 22 ; 2720-2735
01.10.2021
16 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
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