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Title: | Compressive strength of re-vibrated concrete made from pebbles |
Authors: | Auta, Samuel M. Peter, E. A. |
Keywords: | compressive strength concrete Revibrated pebbles granite time-lag |
Issue Date: | 28-Sep-2020 |
Publisher: | E3S Web of Conferences 211, 03007 (2020) The 1st JESSD Symposium 2020. |
Citation: | Auta, S. M. and Peter, E. A. (2020) Compressive strength of re-vibrated concrete made from pebbles. E3S Web of Conferences 211, 03007 (2020) The 1st JESSD Symposium 2020. Available at https://doi.org/10.1051/e3sconf/202021103007. |
Abstract: | The search for natural and readily available structural material to meet the growing demand for ecologically friendly and smart structures is an ongoing development. In this background, an experimental study into the compressive strength of re-vibrated concrete made from pebbles as coarse aggregate is presented. Fifty-six (56) concrete cubes were cast adopting a re-vibration time lag interval of 10minutes for one hour, with a target strength of 15N/mm2. This comprised 28 cubes 100% granite and 28 cubes 100% pebbles as coarse aggregates respectively. Two curing ages were considered: 7 and 28 days. Results from the compressive strength tests of the cured specimens showed that: at successive time lag intervals there was an appreciable rise in compressive strength of concrete; observable was also a rise in the compressive strength with an increase of curing age. However, even though the maximum compressive strength of 25.64N/mm2 for 100%granite was achieved, that of 100%pebbles attained 23.33N/mm2, both at 60th minute of re-vibration time lag respectively. Hence, it can be suggested that 100% pebbles replacement for granite can be used to produce concrete with compressive strength of up to 23N/mm2 when revibrated. |
URI: | http://repository.futminna.edu.ng:8080/jspui/handle/123456789/11751 |
Appears in Collections: | Civil Engineering |
Files in This Item:
File | Description | Size | Format | |
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e3sconf_jessd2020_03007-1_AUTA_2.pdf | E3S Web of Conferences 211, 03007 (2020) The 1st JESSD Symposium 2020 | 486.58 kB | Adobe PDF | View/Open |
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