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Early contributing nanostructured cementitious matrix designs: Benefits in durable features at early ages

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Abstract Blends of cement mortars type IIIA 42,5 with metakaolin and different nanosilicas have been studied. The application of these materials is like offshore concrete elements such as concrete drawers,… Click to show full abstract

Abstract Blends of cement mortars type IIIA 42,5 with metakaolin and different nanosilicas have been studied. The application of these materials is like offshore concrete elements such as concrete drawers, oil and gas offshore platforms…etc, where service-life design requires a high degree of durable contribution and by manufacturing requirements at an early ages. Structural, microstructural characterization and durable behaviour have been carried out by electrical resistivity, mechanical properties, DTA-TG analysis, MIP and chloride diffusion. The study shows a clear benefit at early ages due to synergic effects combining one or two types of nanosilica and metakaolin in the same matrix design, contributing physically by refining the final porous structure and chemically by increasing the chloride binding ability of the cementitious matrix design. It is estimated that the designed service live is of the order of 3 and 4 times greater for the blends exposes to chlorides at early ages (4 and 7 days) than for the reference cement exposed at 28 days.

Keywords: cementitious matrix; matrix; early ages; nanostructured cementitious; contributing nanostructured; early contributing

Journal Title: Construction and Building Materials
Year Published: 2020

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