Concrete with a low carbon dioxide footprint (LCDF) contains less cementitious materials (CM) than ordinary concrete and hence less cementitious paste. Besides the reduced carbon dioxide footprint, LCDF concrete offers other advantages such as reduced cost as well as improved dimensional stability due to reduced hydration heat, creep and shrinkage. Nevertheless, decreasing the quantity of CM has a negative impact on concrete workability. To restore workability, multi-sized fillers are advocated to replace aggregates and CM. Generally, fillers can improve the packing density of concrete due to the filling effect and thus more excess water or paste is available to facilitate spread and flow rate. Two types of fillers were examined in this study – limestone with particles smaller than 75 μm and foundry sand with particles of 75–400 μm. The particles of these two fillers are respectively similar and larger in size when compared with cement. Concrete mixes with no fillers and with mono- or multi-sized fillers were prepared and tested for flowability and strength. The results indicate that more superplasticiser is needed to achieve the same flowability when fillers are added. It was also found that, at the same water/CM ratio, fillers can improve concrete strength, and the use of multi-sized fillers can simultaneously improve the flowability and segregation resistance of concrete.
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March 2017
Research Article|
December 16 2016
Multi-sized fillers to improve strength and flowability of concrete Available to Purchase
Lucija Hanzic, PhD, IZS;
Lucija Hanzic, PhD, IZS
Post-doctoral Fellow
School of Civil Engineering, The University of Queensland, Brisbane, QLD, Australia
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Johnny Ching Ming Ho, MPhil, PhD, MHKIE, MIEAust, CPEng, NER, MIStructE, CEng
Johnny Ching Ming Ho, MPhil, PhD, MHKIE, MIEAust, CPEng, NER, MIStructE, CEng
Senior Lecturer
School of Civil Engineering, The University of Queensland, Brisbane, QLD, Australia (corresponding author: johnny.ho@uq.edu.au)
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Publisher: Emerald Publishing
Received:
July 13 2016
Revision Received:
November 15 2016
Accepted:
November 16 2016
Online ISSN: 1751-7605
Print ISSN: 0951-7197
ICE Publishing: All rights reserved
2016
Advances in Cement Research (2017) 29 (3): 112–124.
Article history
Received:
July 13 2016
Revision Received:
November 15 2016
Accepted:
November 16 2016
Citation
Hanzic L, Ho JCM (2017), "Multi-sized fillers to improve strength and flowability of concrete". Advances in Cement Research, Vol. 29 No. 3 pp. 112–124, doi: https://doi.org/10.1680/jadcr.16.00100
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