Utilization of brown clay and cement for stabilization of clay

This paper investigates the utilization of brown clay and cement in order to stabilize soft clay. Brown clay mixed with a suitable amount of cement paste is capable to impart filler and pozzolanic effect. Therefore, the mechanical behavior of the soil would be improved. Treatment of fine grained soi...

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Main Authors: Mousavi, S., Leong Sing, W.
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Published: 2018
Online Access:http://dspace.uniten.edu.my/jspui/handle/123456789/8948
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spelling my.uniten.dspace-89482018-04-28T16:41:55Z Utilization of brown clay and cement for stabilization of clay Mousavi, S. Leong Sing, W. This paper investigates the utilization of brown clay and cement in order to stabilize soft clay. Brown clay mixed with a suitable amount of cement paste is capable to impart filler and pozzolanic effect. Therefore, the mechanical behavior of the soil would be improved. Treatment of fine grained soils with cement is not novel. While stabilization of fine grained soil with brown clay has not been completely investigated, this paper attempts to assess the mechanical behavior of treated soil with cement and brown clay. Laboratory investigations include direct shear, vane shear, unconfined compression and CBR tests which were applied on the test specimens. In addition, laboratory compaction test was performed to supply the soil specimens with optimum moisture content and maximum dry density. The outcome of the study is an optimal mix design of stabilized clay, which can be applied to improve soft clay. For the optimal mix design, binder composition of cement 8.5%, brown clay 1.5%, silica sand 5% was obtained. Therefore, input cement can be saved due to partial replacement of ordinary Portland cement with 1.5% brown clay. © 2015 JUST. All Rights Reserved. 2018-02-21T04:47:50Z 2018-02-21T04:47:50Z 2015 http://dspace.uniten.edu.my/jspui/handle/123456789/8948
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
description This paper investigates the utilization of brown clay and cement in order to stabilize soft clay. Brown clay mixed with a suitable amount of cement paste is capable to impart filler and pozzolanic effect. Therefore, the mechanical behavior of the soil would be improved. Treatment of fine grained soils with cement is not novel. While stabilization of fine grained soil with brown clay has not been completely investigated, this paper attempts to assess the mechanical behavior of treated soil with cement and brown clay. Laboratory investigations include direct shear, vane shear, unconfined compression and CBR tests which were applied on the test specimens. In addition, laboratory compaction test was performed to supply the soil specimens with optimum moisture content and maximum dry density. The outcome of the study is an optimal mix design of stabilized clay, which can be applied to improve soft clay. For the optimal mix design, binder composition of cement 8.5%, brown clay 1.5%, silica sand 5% was obtained. Therefore, input cement can be saved due to partial replacement of ordinary Portland cement with 1.5% brown clay. © 2015 JUST. All Rights Reserved.
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author Mousavi, S.
Leong Sing, W.
spellingShingle Mousavi, S.
Leong Sing, W.
Utilization of brown clay and cement for stabilization of clay
author_facet Mousavi, S.
Leong Sing, W.
author_sort Mousavi, S.
title Utilization of brown clay and cement for stabilization of clay
title_short Utilization of brown clay and cement for stabilization of clay
title_full Utilization of brown clay and cement for stabilization of clay
title_fullStr Utilization of brown clay and cement for stabilization of clay
title_full_unstemmed Utilization of brown clay and cement for stabilization of clay
title_sort utilization of brown clay and cement for stabilization of clay
publishDate 2018
url http://dspace.uniten.edu.my/jspui/handle/123456789/8948
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score 13.160551