THE EFFECT OF BOTTOM ASH AND KAOLIN ON THE STRENGTH OF POOR SUBBASE
Author(s) -
Chotikan Ratchakrom
Publication year - 2019
Publication title -
international journal of geomate
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.267
H-Index - 17
eISSN - 2186-2990
pISSN - 2186-2982
DOI - 10.21660/2019.57.4665
Subject(s) - subbase , bottom ash , materials science , fly ash , geology , environmental science , metallurgy , composite material , mathematics , discrete mathematics , general topology , topological space , extension topology
The lateritic soil in this study represented weak subbase for road construction. This induced low compressive strength and poor durability of subbase. This research investigated the use of bottom ash and kaolin to improve the strength and durability of lateritic soil. The unconfined compressive test conducted on the soil samples mixed with cement at 1-1.5%, kaolin at 0.5-1% and bottom ash at 2-8% by weight of soil. The samples were cured in a plastic bag at 3, 7 and 14 days then soaked in the water at 2 hours before the test. The results shown the unconfined compressive strength of the soil improvement tends to increase with an increase in the amount of bottom ash. The soil mixed with cement at 1.5%, kaolin at 0.5%, and bottom ash at 6-8% can be developed the strength near the soil mixed with cement at 3% in 7 days. Moreover, the soil samples mixed with bottom ash at 6%, kaolin at 0.5% and cement at 1.5% can be increased the compressive strength 87% of the samples without bottom ash and kaolin. The strength requirement of subbase improvement is 689 kPa at the curing time 7 days. The results demonstrated the strength of soil mixed with cement at 1.5%, kaolin at 0.5% and bottom ash at 4-8% was higher than the requirement. In conclusion, bottom ash and kaolin can develop the strength of poor subbase and reduced the utilized amount of cement to improve the strength of soil.
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