To Investigation of Plastic Concrete Bentonite Changes on it's Physical Properties

Bentonite is one of the most important materials in Plastic concretes due to causes to fill voids of concretes. Plastic concrete is well known as a suitable material for building earth dam cut off due to low permeability, high deformability and enough strength to withstand applied stresses. In this...

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Main Authors: Kazemian, Sina, Ghareh, S., Torkanloo, L.
Other Authors: Chong, O
Format: Conference Paper
Language:English
Published: ELSEVIER SCIENCE BV 2016
Subjects:
Online Access:http://hdl.handle.net/20.500.11937/76220
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author Kazemian, Sina
Ghareh, S.
Torkanloo, L.
author2 Chong, O
author_facet Chong, O
Kazemian, Sina
Ghareh, S.
Torkanloo, L.
author_sort Kazemian, Sina
building Curtin Institutional Repository
collection Online Access
description Bentonite is one of the most important materials in Plastic concretes due to causes to fill voids of concretes. Plastic concrete is well known as a suitable material for building earth dam cut off due to low permeability, high deformability and enough strength to withstand applied stresses. In this study, we have investigated the effect of the ratio of mixing materials (mixture proportions) and cement as well as the materials' quality such as the type of bentonite on marsh, compressive strength and modulus elasticity of plastic concrete. The results of this study showed that by decreasing the ratio of term activity, compressive strength will be reduced due to increasing free water in case of the stability of other parameters. However, the effect of cement has direct effect on mechanical properties of plastic concrete.
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institution Curtin University Malaysia
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language English
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publishDate 2016
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spelling curtin-20.500.11937-762202019-09-03T23:48:14Z To Investigation of Plastic Concrete Bentonite Changes on it's Physical Properties Kazemian, Sina Ghareh, S. Torkanloo, L. Chong, O Parrish, K Tang, P Grau, D Chang, J Science & Technology Technology Construction & Building Technology Engineering, Civil Engineering Plastic concrete Compressive strength Marsh Modulus Elasticity Bentonite is one of the most important materials in Plastic concretes due to causes to fill voids of concretes. Plastic concrete is well known as a suitable material for building earth dam cut off due to low permeability, high deformability and enough strength to withstand applied stresses. In this study, we have investigated the effect of the ratio of mixing materials (mixture proportions) and cement as well as the materials' quality such as the type of bentonite on marsh, compressive strength and modulus elasticity of plastic concrete. The results of this study showed that by decreasing the ratio of term activity, compressive strength will be reduced due to increasing free water in case of the stability of other parameters. However, the effect of cement has direct effect on mechanical properties of plastic concrete. 2016 Conference Paper http://hdl.handle.net/20.500.11937/76220 10.1016/j.proeng.2016.04.140 English http://creativecommons.org/licenses/by-nc-nd/4.0/ ELSEVIER SCIENCE BV fulltext
spellingShingle Science & Technology
Technology
Construction & Building Technology
Engineering, Civil
Engineering
Plastic concrete
Compressive strength
Marsh
Modulus Elasticity
Kazemian, Sina
Ghareh, S.
Torkanloo, L.
To Investigation of Plastic Concrete Bentonite Changes on it's Physical Properties
title To Investigation of Plastic Concrete Bentonite Changes on it's Physical Properties
title_full To Investigation of Plastic Concrete Bentonite Changes on it's Physical Properties
title_fullStr To Investigation of Plastic Concrete Bentonite Changes on it's Physical Properties
title_full_unstemmed To Investigation of Plastic Concrete Bentonite Changes on it's Physical Properties
title_short To Investigation of Plastic Concrete Bentonite Changes on it's Physical Properties
title_sort to investigation of plastic concrete bentonite changes on it's physical properties
topic Science & Technology
Technology
Construction & Building Technology
Engineering, Civil
Engineering
Plastic concrete
Compressive strength
Marsh
Modulus Elasticity
url http://hdl.handle.net/20.500.11937/76220