Optimal Amount of Flag and Fly Ash in Steel Fiber Reinforced Concrete
Abstract
This experiment research adopts ordinary portland cement with the strength grade of 42.5, mixed it with slag, fly ash and water reducing agent to prepare C40 steel fiber reinforced concrete (SFRC). Via observing the compressive strength changes of steel fiber reinforced concrete when different amount of steel fiber, slag and fly ash were mixed, reasonable amount of steel fiber was determined with the maximum compressive strength of concrete. As a result, as concentrations of minerals and sand ratio changed, the compressive strength of concrete varied regularly. In addition, when the strength was maximum, the amount of steel fiber proved to be constant with the value of 1.4%.
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Du, X. H. (2004). Application of steel fiber reinforced concrete in the beam nodes of reinforced concrete framework. Gansu Science and Technology, (7), 116-120.
Feng, J. E. (2001). Fly ash as filling cementitious material. Comprehensive Utilization of Fly Ash, (5), 54-60.
Gong, L. S., & Yang, C. F. (2003). Light aaggregate concrete. Beijing: China Railway Press.
Lin, X. S., & Yang L. G. (2012). Steel Fiber of high strength and concrete of superstrength. Beijing: Science Press.
Sun, K. Y. (2008). Application of steel fiber in rigid waterproofing roof. Journal of Baotou Iron and Steel Institute, (4), 311-315.
Sun, M. (2009). Empirical study of large amount of slag and fly ash in concrete. Chongqing (Unpublished master dissertation). Chongqing Jiaotong University.
Wang, F. S. (2009). Empirical study of slag cementitious material with high performance. Journal of Shandong Institute of Building Materials, (3), 23-27.
Wang, X., Zhao, X. M. & Wang, J. J. (2006). Application of steel fiber reinforced concrete in building construction project. Journal of Shandong Agricultural University (Natural Science Edition), (2), 255-258.
Wei, A. F. (2005). Application of steel fiber reinforced concrete in the earthquake resistant structure of tall buildings. Concrete and Cement Products, (3), 54-60.
Yi, C. (2005). Application of steel fiber reinforced concrete in the field of sheet metal and thin wall. China Building Material, (11), 23-28.
Ying, G. F. (2008). Application of steel fiber reinforced concrete in the important locations of tall buildings. Fujian Construction Technology, (12), 135-145.
Zhang, Y. (2012). Effect of different fiber on toughness properties of light aggregate concrete. Concrete, (5), 30-35.
DOI: http://dx.doi.org/10.3968/4351
DOI (PDF): http://dx.doi.org/10.3968/g6147
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