The study of using rice husk ash to produce ultra high performance concrete

Construction and Building Materials - Tập 25 - Trang 2030-2035 - 2011
Nguyen Van Tuan1, Guang Ye1, Klaas van Breugel1, Alex L.A. Fraaij1, Danh Dai Bui2
1Microlab, Faculty of Civil Engineering and Geosciences, Delft University of Technology, P.O. Box 5048, 2600 GA Delft, The Netherlands
2Department of Building Materials, National University of Civil Engineering, 55 Giai Phong Road, Hanoi, Viet Nam

Tài liệu tham khảo

BFUP, AFGC, Ultra high performance fibre-reinforced concretes. Interim recommendations, France: AFGC Publication; 2002. Richard, 1994, Reactive powder concretes with high ductility and 200–800MPa compressive strength, ACI SP144-24, 507 Richard, 1995, Composition of reactive powder concretes, Cem Concr Res, 25, 1501, 10.1016/0008-8846(95)00144-2 Buitenaar P. Ultra high performance concrete: developments and applications during 25 years. In: Plenary session international symposium on UHPC, Kassel, Germany; 2004. Rice market monitor, FAO, <http://www.fao.org/es/ESC/common/ecg/71/en/RMM-Jun09.pdf>, FAO, June 2009. Bui DD. Rice husk ash as a mineral admixture for high performance concrete. PhD thesis, Delft University of Technology, Delft; 2001. p. 122. Cook DJ. Rice Husk Ash, Cement Replacement Materials, Concrete Technology and Design. In: Swamy RN, editor, vol. 3, UK: Surrey University Press; 1996. p. 171–96. Mehta PK. Rice husk ash – a unique supplementary cementing material. Advances in concrete technology, Ottawa: Centre for Mineral and Energy Technology; 1994. p. 419–44. Mehta, 1983, Pozzolanic and cementitious by-products as mineral admixtures for concrete, ACI SP-79, 1 Huang, 1985, Hydration reactions in Portland cement–silica fume blends, Cem Concr Res, 15, 585, 10.1016/0008-8846(85)90056-0 Qingge F, Hirohito Y, Masami S, Sugita S. Efficiency of highly active rice husk ash on the high-strength concrete. In: Proceedings of the 11th international congress on the chemistry of cement (ICCC), Durban, South Africa; 2003. p. 816–22. Zhang, 1996, Rice husk ash paste and concrete: some aspects of hydration and the microstructure of the interfacial zone between the aggregate and paste, Cem Concr Res, 26, 963, 10.1016/0008-8846(96)00061-0 Dalhuisen DH, Stroeven P, Bui DD, Quy NT. Replacement of condensed silica fume by rice husk ash for the production of high strength concrete in developing countries. In: Proceedings of the international conference utilization of high strength/high performance concrete, Paris; 1996. p. 235–43. Chandrasekhar, 2002, Microsilica from rice hush ash as a possible substitute for condensed silica fume for high performance concrete, J Mater Sci Lett, 21, 1245, 10.1023/A:1016598818321 UNIDO (United nations industrial development organization), Vienna. Rice husk ash cement: its development and application; 1984. p. 100. de Larrard, 1994, Optimization of ultra-high-performance concrete by the use of a packing model, Cem Concr Res, 24, 997, 10.1016/0008-8846(94)90022-1 Jones, 2002, Comparison of particle packing models for proportioning concrete constituents for minimum voids ratio, Mater Struct, 35, 301 Nguyen VT, Ye G, Van Breugel K, Bui DD. Influence of rice husk ash fineness on the hydration and microstructure of blended cement paste. In: The seventh international symposium on cement and concrete (ISCC2010), Jinan, China; May 2010. Nguyen VT, Ye G, Van Breugel K, Guo Z, Bui DD. Hydration process of rice husk ash and silica fume in cement paste by means of isothermal calorimetry. In: the sixth international conference on concrete under severe conditions environment and loading (CONSEC’10), Yucatan, Mexico; June 2010. p. 1521–8. van Breugel K, Ye G. Analyses of hydration processes and microstructural development of UHPC through numerical simulation. In: proceedings of the international symposium on ultra high performance concrete, Germany; 2004. p. 253–64. Detwiler, 1989, Chemical and physical effects of silica fume on the mechanical behavior of concrete, ACI Mater J, 86, 609 Popovis, 1993, Portland cement–fly ash–silica fume systems in concrete, Adv Cem Based Mater, 1, 83, 10.1016/1065-7355(93)90013-E Weber, 1997, A new generation of high performance concrete: concrete with autogenous curing, Adv Cem Based Mater, 6, 59, 10.1016/S1065-7355(97)00009-6 van Breugel, 1999, Low water/binder ratio concretes with low cracking risk by using LWA, Proc Int Conf Dundee, 255 Jensen, 2001, Water-entrained cement-based materials. I. Principles and theoretical background, Cem Concr Res, 31, 647, 10.1016/S0008-8846(01)00463-X Jensen, 2002, Water-entrained cement-based materials. II. Experimental observations, Cem Concr Res, 32, 973, 10.1016/S0008-8846(02)00737-8