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Flexural Performance of Laterized Concrete made with Blended Flyash Cement (Fa-Latcon)
This paper presents the results of the experimental assessment of the Flexural performance of Fly ash Laterized concrete (FA-LATCON). Test were conducted on concrete mixtures which was obtained by replacing 0 and 20% by weight of ordinary portland cement (OPC) with Fly ash (FA) and replacement of fine aggregate (sand) with Laterite (Lat.) by 0%, 10%, 20% and 30% for hydration period of 7, 21, 28 and 56days. Series of tests on fresh and hardened properties on FA-LATCON was carried out. The design mix was made for 28days target strengths of 25N/mm2 with 0.65 water to Binder ratio. The Flexural strength measured after 28days of curing increase with age but decrease with increase in Laterite and FA content respectively. The FA-LATCON Flexural strength performance was satisfactory having achieved a least ratio of 28days Flexural strength to 28-days design compressive strength of 0.273.
Flexural Performance of Laterized Concrete made with Blended Flyash Cement (Fa-Latcon)
This paper presents the results of the experimental assessment of the Flexural performance of Fly ash Laterized concrete (FA-LATCON). Test were conducted on concrete mixtures which was obtained by replacing 0 and 20% by weight of ordinary portland cement (OPC) with Fly ash (FA) and replacement of fine aggregate (sand) with Laterite (Lat.) by 0%, 10%, 20% and 30% for hydration period of 7, 21, 28 and 56days. Series of tests on fresh and hardened properties on FA-LATCON was carried out. The design mix was made for 28days target strengths of 25N/mm2 with 0.65 water to Binder ratio. The Flexural strength measured after 28days of curing increase with age but decrease with increase in Laterite and FA content respectively. The FA-LATCON Flexural strength performance was satisfactory having achieved a least ratio of 28days Flexural strength to 28-days design compressive strength of 0.273.
Flexural Performance of Laterized Concrete made with Blended Flyash Cement (Fa-Latcon)
Ogunbode, Ezekiel Babatunde (author) / Ibrahim, S. Mohoro (author) / Kure, Maji Aliyu (author) / Saka, Rasaq (author)
2013-04-26
oai:zenodo.org:3470357
Greener Journal of Science, Engineering and Technological Research 3(4) 102-109
Article (Journal)
Electronic Resource
English
DDC:
690
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