This study investigates the drying shrinkage of light-weight concrete containing expanded polystyrene beads. Nine shrinkage specimens in three groups were subjected to three different conditions of drying and wetting periods for 450 d. The effect of the weight loss of specimens on the shrinkage is studied. A proposed new relationship to predict the shrinkage behaviour of the specimens is verified by the existing models. A bilinear relationship between the rate of weight loss and shrinkage increment is also developed. Results show that a longer curing period strongly affects the shrinkage behaviour over the first few months. The rate of weight loss, rate of shrinkage with time and the ratio of the rate of weight loss to the initial weight of specimens are also investigated.
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July 2019
Research Article|
March 16 2018
Analytical study of the drying shrinkage in light-weight concrete containing EPS beads
Behnam Vakhshouri;
Behnam Vakhshouri
Researcher, Centre for Built Infrastructure Research (CBIR), University of Technology Sydney (UTS), Sydney, New South Wales, Australia (corresponding author: behnam.vakhshouri@student.uts.edu.au)
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Sri Ravindrarajah Rasiah;
Sri Ravindrarajah Rasiah
Honorary Associate, Centre for Built Infrastructure Research (CBIR), University of Technology Sydney (UTS), Sydney, New South Wales, Australia
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Shami Nejadi
Shami Nejadi
Associate Professor, Centre for Built Infrastructure Research (CBIR), University of Technology Sydney (UTS), Sydney, New South Wales, Australia
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Publisher: Emerald Publishing
Received:
January 24 2017
Revision Received:
December 26 2017
Accepted:
December 26 2017
Online ISSN: 1751-7605
Print ISSN: 0951-7197
ICE Publishing: All rights reserved
2018
Advances in Cement Research (2019) 31 (7): 308–318.
Article history
Received:
January 24 2017
Revision Received:
December 26 2017
Accepted:
December 26 2017
Citation
Vakhshouri B, Rasiah SR, Nejadi S (2019), "Analytical study of the drying shrinkage in light-weight concrete containing EPS beads". Advances in Cement Research, Vol. 31 No. 7 pp. 308–318, doi: https://doi.org/10.1680/jadcr.17.00017
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