The influence of superabsorbent polymers on strength and durability properties of blended cement mortars
Tài liệu tham khảo
Jensen OM. Use of superabsorbent materials in construction materials. In: 1st International conference on microstructure related durability of cementitious composites, RILEM Pro 061; 2008. p. 757–64.
Kolver K, Jensen OM, editors. RILEM TC 196-ICC: internal curing of concrete, state-of-the-art report, France; 2007. 161pp.
Jensen OM. Use of superabsorbent polymers in concrete. Concrete International, January 2013. p. 48–52.
Jensen, 2001, Water-entrained cement-based materials. I. Principles and theoretical background, Cem Concr Res, 31, 647, 10.1016/S0008-8846(01)00463-X
Mangat, 1994, Microstructure, chloride diffusion and reinforcement corrosion in blended cement paste and concrete, Cem Concr Compos, 16, 73, 10.1016/0958-9465(94)90002-7
Song, 2006, Studies on the corrosion resistance of reinforced steel in concrete with ground granulated blast-furnace slag – an overview, J Hazard Mater, B138, 226, 10.1016/j.jhazmat.2006.07.022
Scott, 2007, The influence of binder type, cracking and cover on corrosion rates of steel in chloride-contaminated concrete, Mag Concr Res, 59, 495, 10.1680/macr.2007.59.7.495
Papadakis, 2000, Effect of supplementary cementing materials on concrete resistance against carbonation and chloride ingress, Cem Concr Res, 30, 291, 10.1016/S0008-8846(99)00249-5
Otieno, 2010, Corrosion in cracked and uncracked concrete – influence of crack width, concrete quality and crack re-opening, Mag Concr Res, 62, 393, 10.1680/macr.2010.62.6.393
Jensen, 2002, Water-entrained cement-based materials – II. Experimental observations, Cem Concr Res, 32, 973, 10.1016/S0008-8846(02)00737-8
Esteves, 2011, Superabsorbent polymers: on their interaction with water and pore fluid, Cement Concr Compos, 33, 717, 10.1016/j.cemconcomp.2011.04.006
Esteves, 2012, An ongoing investigation on modeling the strength properties of water-entrained cement-based materials, 521
Jensen OM. Water absorption of superabsorbent polymers in a cementitious environment. In: Leung C, Wan KT, editors. Advances in construction materials through science and engineering, September 5–7 2011 (Hong Kong, China), RILEM PRO 79, 2011. p. 22–35.
Beushausen H, Alexander M. Performance-based service life design of reinforced concrete structures using durability indicators. In: Concrete Life’09, 7–9 September 2009, Haifa, Israel. p. 408–15.
BS EN 206-1: 2000, Concrete – part 1: specification, performance, production and conformity.
Nganga, 2013, Practical implementation of the durability index performance-based design approach, Constr Build Mater, 45, 251, 10.1016/j.conbuildmat.2013.03.069
Alexander, 2001, Use of durability indexes to achieve durable cover concrete in reinforced concrete structures, vol. VI, 483
Mackechnie JR, Alexander MG. Durability predictions using early age durability index testing. In: Proceedings, 9th durability and building materials conference. Brisbane: Australian Corrosion Association; 2002. 11p.
Beushausen H, Alexander MG, Mackechnie J. Concrete durability aspects in an international context. Concrete plant and precast technology BFT, vol. 7, Germany; 2003. p. 22–32.
Torrent R, Fernández Luco L, editors. State of The Art Report (STAR): RILEM TC 189-NEC: non-destructive evaluation of the covercrete. Zurich, Switzerland; 2007. 223 pp.
Mackechnie JR. Predictions of reinforced concrete durability in the marine environment. Research Monograph No. 1, Department of Civil Engineering, University of Cape Town; 2001. 28pp.
ASTM C1556. 2004: Standard test method for determining the apparent chloride diffusion coefficient of cementitious mixtures by bulk diffusion.