TY - JOUR
T1 - High-strength rice husk ash concrete incorporating quarry dust as a partial substitute for sand
AU - Raman, S. N.
AU - Ngo, T.
AU - Mendis, P.
AU - Mahmud, H. B.
N1 - Funding Information:
This research was partly supported by the University of Malaya Vot-F Research Grant. The contribution of Mr. C.H. Lee and Mr. S.L. Low who performed a significant part of the experimental work reported in this paper is duly acknowledged. The first author is grateful to the Ministry of Higher Education of Malaysia and Universiti Kebangsaan Malaysia for providing the scholarship for his Doctoral studies at The University of Melbourne, Australia. The assistance provided by Ms. Samantha Yee in proof reading this article is also duly acknowledged.
Copyright:
Copyright 2011 Elsevier B.V., All rights reserved.
PY - 2011/7
Y1 - 2011/7
N2 - Quarry dust is a by-product from the granite crushing process in quarrying activities. This paper presents the findings from experimental work undertaken to evaluate the suitability of quarry dust as a partial substitute for sand in high-strength concrete (HSC) containing rice husk ash (RHA). Two grades of HSC mixes, to achieve 60 MPa and 70 MPa at 28 days, were designed with and without the incorporation of RHA. Quarry dust was then used in the mixes containing RHA as a partial substitute for sand, in quantities ranging from 10% to 40%. The slump of the fresh concrete and the compressive strength development were monitored up to 28 days. Based on the results obtained, the mixes containing 20% quarry dust were chosen as the optimum mix design for both grades of concrete, which would then undergo further evaluation of their strength and mechanical properties up to one year. The results obtained in the next stage suggest that even though the use of quarry dust as a partial substitute for sand results in some minor negative effects in the compressive strength and other mechanical properties of concrete, these outcomes can easily be compensated by a good mix design and by the incorporation of RHA. The findings of the research assert that quarry dust can be used as a viable replacement material to sand to produce high-strength RHA concrete.
AB - Quarry dust is a by-product from the granite crushing process in quarrying activities. This paper presents the findings from experimental work undertaken to evaluate the suitability of quarry dust as a partial substitute for sand in high-strength concrete (HSC) containing rice husk ash (RHA). Two grades of HSC mixes, to achieve 60 MPa and 70 MPa at 28 days, were designed with and without the incorporation of RHA. Quarry dust was then used in the mixes containing RHA as a partial substitute for sand, in quantities ranging from 10% to 40%. The slump of the fresh concrete and the compressive strength development were monitored up to 28 days. Based on the results obtained, the mixes containing 20% quarry dust were chosen as the optimum mix design for both grades of concrete, which would then undergo further evaluation of their strength and mechanical properties up to one year. The results obtained in the next stage suggest that even though the use of quarry dust as a partial substitute for sand results in some minor negative effects in the compressive strength and other mechanical properties of concrete, these outcomes can easily be compensated by a good mix design and by the incorporation of RHA. The findings of the research assert that quarry dust can be used as a viable replacement material to sand to produce high-strength RHA concrete.
KW - Compressive strength
KW - High-strength concrete (HSC)
KW - Initial surface absorption
KW - Mechanical properties
KW - Quarry dust
KW - Rice husk ash (RHA)
KW - Superplasticizer
UR - https://www.scopus.com/pages/publications/79953183909
U2 - 10.1016/j.conbuildmat.2010.12.026
DO - 10.1016/j.conbuildmat.2010.12.026
M3 - Article
AN - SCOPUS:79953183909
SN - 0950-0618
VL - 25
SP - 3123
EP - 3130
JO - Construction and Building Materials
JF - Construction and Building Materials
IS - 7
ER -