The effects of waste marble dust applying as a fine sand on the mechanical properties of concrete
 
 
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Technical Education Faculty, Construction Department, Firat University, Elazig, Turkey
 
 
Publication date: 2010-09-01
 
 
Cement Wapno Beton 15(5) 259-267 (2010)
 
ACKNOWLEDGEMENTS
The author would like to acknowledge Assoc. Prof. Dr. Salih Yazicioglu of the Technical Education Faculty Construction Department of the Firat University, for reading the paper in draft and for his helpful suggestions.
 
REFERENCES (29)
1.
V. Corinaldesi, G. Moriconi, T. R. Naik, Characterization of marble powder for its use in mortarand concrete. Construction and Building Materials, 24, 113-117 (2010).
 
2.
M. Karasahin, S. Terzi, Evaluation of marble dust in the mixture of asphaltic concrete. Construction and Building Materials, 21, 616-620 (2007).
 
3.
B. Demirel, S. Yazıcıoğlu, Thermoelectric behavior of carbon fi ber reinforced lightweight concrete with mineral admixtures, New Carbon Materials, 23(1), 21-24 (2008).
 
4.
B. Demirel, S. Yazıcıoğlu, The effect of silica fume on the mechanical properties of carbon fi ber reinforced lightweight concrete. Süleyman Demirel University Journal of Natural and Applied Sciences, 11(1), 103- 109 (2007).
 
5.
S. Yazıcıoğlu, B. Demirel, The effect of the pumice of Elazig region used as pozzolanic additive on the compressive strength of concrete in increasing cure ages. Science and Engineering Journal of Firat University, 18(3), 367-374 (2006) (in Turkish).
 
6.
M. S. Hameed, A. S. S. Sekar, Properties of green concrete containing quarry rock dust and marble sludge powder as fi ne aggregate. ARPN Journal of Engineering and Applied Sciences, 4(4), 83-89 (2009).
 
7.
K. E. Alyamac, R. Ince, A preliminary concrete mix design for SCC with marble powders. Construction and Building Materials, 23, 1201-1210 (2009).
 
8.
E. Güneyisi, M. Gesoglu, E. Özbay, Effects of marble powder and slag on the properties of self compacting mortars. Materials and Structures, 42, 813-826 (2009).
 
9.
O. Unal, T. Uygunoglu, Investigation of mechanical properties of waste marble dusty concrete which under the effect of freeze and thaw. Turkey 4th Marble Symposium, 147-157, December 2003.
 
10.
H. Akbulut, C. Gürer, Use of aggregates produced from marble quarry waste in asphalt pavements. Building and Environment, 42, 1921-1930 (2007).
 
11.
H. Binici, T. Shah, O. Aksogan, H. Kaplan, Durability of concrete made with granite and marble as recycle aggregates. Journal of Materials Processing Technology, 208, 299-308 (2008).
 
12.
H. Y. Aruntas, M. Gürü, M. Dayı, İ. Tekin, Utilization of waste marble dust as an additive in cement production. Metarials and Design, 31(8), 4039-4042 (2010).
 
13.
K. Wu, B. Chen, W. Yao, D. Zhang, Effect of coarse aggregate type on mechanical properties of high-performance concrete. Cement and Concrete Research, 31(10), 1421-1425 (2001).
 
14.
H. Binici, H. Kaplan, S. Yilmaz, Infl uence of marble and limestone dusts as additives on some mechanical properties of concrete. Scientifi c Research and Essay, 2(9), 372-379 (2007).
 
15.
ACI 211.1. Standard practice for selecting proportions for normal, heavyweight and mass concrete. ACI Manual of Concrete Practice, 38 (1993).
 
16.
T. Erdogan, Concrete, METU Press, 741 (2003) (in Turkish).
 
17.
C. Tasdemir, Combined effects of mineral admixtures and curing conditions on the sorptivity coeffi cient of concrete. Cement and Concrete Research, 33, 1637-1642 (2003).
 
18.
I. Türkmen, Infl uence of different curing conditions on the physical and mechanical properties of concretes with admixtures of silica fume and blast furnace slag, Materials Letters, 57(29), 4560-4569 (2003).
 
19.
T. Gonen, S. Yazicioglu, The infl uence of mineral admixtures on the short and long-term performance of concrete, Building and Environment, 42, 3080-3085 (2007).
 
20.
V. G. Papadikis, M. N. Fardis, C. G. Veyenas, Hydration and carbonation of pozzolanic cements, ACI Mater. J., 89(2), 119-130 (1992).
 
21.
J. A. Rossignolo, M. V. Agnesini, Durability of polymer-modifi ed lightweight aggregate concrete, Cement and Concrete Composites, 26(4), 375-380 (2004).
 
22.
İ. B. Topcu, T. Bilir, T. Uygunoglu, Effect of waste marble dust content as fi ller on properties of self-compacting concrete. Construction and Building Materials, 23, 1947-1953 (2009).
 
23.
İ. B. Topcu, B. Isıkdag, Effect of expanded perlite aggregate on the properties of lightweight concrete. Journal of Materials Processing Technology, 204, 34-38 (2008).
 
24.
ASTM C39, Standard test method for compressive strength of cylindrical concrete specimens, Annual Book of ASTM Standards (1994).
 
25.
S. Valls, A. Yagüe, E. Vazquez, C. Mariscal, Physical and mechanical properties of concrete with added dry sludge from a sewage treatment plant. Cement and Concrete Research, 34, 2203-2208 (2004).
 
26.
P. Türker, B. Erdogan, K. Erdogdu, Infl uence of marble powder on microstructure and hydration of cements. Cement and Concrete World, 7(38), 50-62 (2002).
 
27.
P. Kristulovic, N. Kamenic, K. Popovic, A new approach in evaluation of fi ller effect in cement. Cement and Concrete Research, 24(4), 721-727 (1994).
 
28.
İ. Türkmen, A. Kantarcı, Effects of expanded perlite aggregate and different curing conditions on the physical and mechanical properties of selfcompacting concrete. Build Environ, 42(6), 2378–2383 (2007).
 
29.
İ. B. Topcu, Statistics in Civil Engineering, Eskişehir, 153 (2006) (in Turkish).
 
ISSN:1425-8129
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