Mix Design Aspects of High Performance Concrete Comprised of Silica Fume and Fly Ash
Autor: | P. S. K. Pathirana, H. D. Yapa, R. M. D. M. Sanjeewa |
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Rok vydání: | 2017 |
Předmět: |
High performance concrete
Materials science Waste management Silica fume 0211 other engineering and technologies Context (language use) 02 engineering and technology 010502 geochemistry & geophysics Pulp and paper industry 01 natural sciences Mix design Compressive strength Construction industry Fly ash 021105 building & construction Cementitious 0105 earth and related environmental sciences |
Zdroj: | Engineer: Journal of the Institution of Engineers, Sri Lanka. 50:23 |
ISSN: | 2550-3219 1800-1122 |
DOI: | 10.4038/engineer.v50i4.7272 |
Popis: | With massive developments taking place in the construction industry, the demand for high performance concrete (HPC) is steadily increasing. It is possible to use industrial by-products such as silica fume (SF) and fly ash (FA) as supplementary cementitious materials (SCMs), to enhance the attributes of HPC. Although numerous investigations have been carried out to identify the optimum replacement levels of these SCMs, some inconsistences are noticed in the results. In this context, a study was conducted to look into the combined effect of SF and FA on the strength and workability of HPC. Four SF replacement levels: 5%, 10%, 12.5%, and 15%; and five FA replacement levels: 0%, 5%, 10%, 15% and 20% were proposed. A total of nineteen mix proportions were used including a control mix. Water-binder ratio was kept constant at 0.35. The mixes were tested for 7 and 28-day compressive strengths and for their workability. Results obtained revealed that the maximum 7-day compressive strength was in the mix with 10% of SF with no FA and the maximum 28-day compressive strength was in the mix with 12.5% of SF and 5% of FA. The workability increased with the addition of fly ash while the SF content kept below 10%. In terms of economy, the best strength to cost ratio was found in the control mix. The extension of the k-value concept for the water/binder ratio found in EN 206 for SF-FA combinations revealed that the existing parameters kSF = 2.0 and kFA = 0.4 show a good correlation with the experimental results. |
Databáze: | OpenAIRE |
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