참고문헌
- ASTM C 642-06 (2006), Standard Test Method for Density, Absorption, and Voids in Hardened Concrete, American Society for Testing and Materials, USA.
- BS 812-110 (1990), Testing Aggregate Methods for Determination of Aggregate Crushing Value, British Standards Institution, UK.
- Bui, L.A., Hwang, C.L., Chen, C., Lin, K. and Hsieh, M. (2012), "Manufacture and performance of cold bonded lightweight aggregate using alkaline activators for high performance concrete", Const. Build. Mat., 35, 1056-1062. https://doi.org/10.1016/j.conbuildmat.2012.04.032
- Chi, J.A.M., Huang, R., Yang, C.C. and Chang, J.J. (2003), "Effect of aggregate properties on the strength and stiffness of lightweight concrete", Cement Concrete Compos., 25(2), 197-205. https://doi.org/10.1016/S0958-9465(02)00020-3
- Emerson, M. (1999), "Mechanism of water absorption by concrete", Proceeding of international Conference of protection of concrete (Ed. by Dhir, R. and Green, J.), Dundee, 624-634.
- Gesoglu, M., Guneyisi, E. and Oz, H.O. (2012b), "Properties of light weight aggregate produced with cold -bonding pellatization of fly ash and ground granulated blast furnace slag", Mat. Struct., 45, 1535-1546. https://doi.org/10.1617/s11527-012-9855-9
- Gesoglu, M., Guneyisi, E. , Mahmood, S.W. and Oz, H.O. (2012), "Recycling ground granulated blast furnace slag as cold bonded artificial aggregate partially used in self-compacting concrete", J. Hazardous Mat., 235-236, 352-358. https://doi.org/10.1016/j.jhazmat.2012.08.013
- Gesoglu, M., Ozturan, T. and Gooneys, E. (2004), "Shrinkage cracking of light weight concrete made with cold -bonded fly ash aggregate", Cement Concrete Res., 34(7), 1121-1130 https://doi.org/10.1016/j.cemconres.2003.11.024
- Ghafoori, N. and Diawara, H. (2010), "Evaluation of fresh properties of self-consolidating concrete under long transportation time and extreme temperature", Proceeding of SCC 2010, Design, Production and Placement of Self-consolidation concrete (Ed. by Khayat, K.H. and Feys, D.), Canada, 139-152.
- IS:10262 (2009), Concrete Mix Proportioning -Guidelines, Bureau of Indian Standards, New Delhi, India.
- IS:1199 (1950), Method of Sampling and Analysis of Concrete, Bureau of Indian Standards, New Delhi, India.
- IS:2316 (1997), Methods of Test for Aggregate for Concrete, Bureau of Indian Standards, New Delhi, India.
- IS:383(1970), Specification for Coarse and Fine Aggregates from Natural Sources for Concrete - Code of Practice, Bureau of Indian Standards, New Delhi, India.
- IS:516 (1959), Methods of test for strength of concrete- Code of Practice, Bureau of Indian Standards, New Delhi, India.
- IS:5816 (1999), Splitting tensile strength of concrete - Method of Test-Code of Practice, Bureau of Indian Standards, New Delhi, India.
- IS:8112 (1989), 43 Grade Ordinary Portland Cement - Specification, Bureau of Indian Standards, New Delhi, India.
- Jo, B.W., Park, S.K. and Park, J.B. (2007), "Properties of concrete made with alkali activated fly Ash lightweight aggregate", Cement Concrete Compos., 29(2), 33-38.
- Joseph, G. and Ramamurthy, K. (2008), "Effect of cold bonded aggregate on workability and mechanical properties of concrete", Inst. Eng. J. (India), 89, 33-38.
- Joseph, G. and Ramamurthy, K. (2009), "Influence of fly ash on strength and sorption characteristics of cold-bonded fly ash aggregate concrete", Const. Build. Mat., 23(5), 1862-1870. https://doi.org/10.1016/j.conbuildmat.2008.09.018
- Joseph, G. and Ramamurthy, K. (2011), "Autogenous curing of cold-bonded fly-ash -aggregate concrete", J. Mat. Civil Eng., 23, 393-401. https://doi.org/10.1061/(ASCE)MT.1943-5533.0000177
- Malarics, V. and Muller, H.S. (2010), "Evaluation of the splitting tension test for concrete from a fracture mechanical point of view", Proceedings of FraMCoS-7, 709-716.
- Nguyen, H.T. (2011), "Water and heat transfer in cement based materials", Ph.D. Dissertation, University of Tromso, Norway.
- Parrott, L.J. (1992), "Water absorption in cover concrete", Mater. Struct., 25, 284-292. https://doi.org/10.1007/BF02472669
- Poon, C.S., Kou, S.C. and Lam, L. (2007), "Influence of recycled aggregate on slump and bleeding of fresh concrete", Mater. Struct., 40, 981-988. https://doi.org/10.1617/s11527-006-9192-y
- Priyadharshiny, P., Ganesh, G.M. and Santhi, A.S. (2011), "Experimental study on cold bonded fly ash aggregates", Int. J. Civil Struct. Eng., 2(2), 493-501.
- Yu, C.C., Tung, S.H. and Weng, M.C. (2008), "The failure mechanism of a concrete cube", Proceeding of the Sixth International Conference on Engineering Composit Tech. (Ed. by Papadrakakis, M. and Topping, B.H.V.), Paper ID 131.
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