Civil Engineering Reference
In-Depth Information
1105-1123.
Arya, C., Buenfeld, N.R., and Newman, J.B. (1990) Factors affecting chloride binding in
concrete. Cement and Concrete Research 20, 291-300.
Bonen, D. (1997) The microstructure of concrete subjected to high magnesium and high
magnesium sulfate brine attack, in Proceedings 10th ICCC, Göteborg, paper 41v022.
Bonen, D., and Cohen, M.P. (1992) Magnesium sulfate attack on Portland cement pastes.
Cement and Concrete Research 22, 169-180, 707-718.
Dass, K. et al. (1992) Corrosion susceptibility of galvanized and mild steel reinforcement
in blended cement concrete, in Proceedings 9th ICCC, New Delhi, Vol. 5, pp. 302-
308.
Deja, J. (1997) Chloride resistance of the pastes and mortars containing mineral
additives, in Proceedings 10th ICCC, Göteborg, paper 4iv015.
Djuric, M. et al. (1996) Sulfate corrosion of Portland cement: pure and blended with 30%
fly ash. Cement and Concrete Research 26, 1295-1300.
Eglinton, M. (1998) Resistance of concrete to destructive agents, in Lea's Chemistry of
Cement and Concrete (ed. P.C.Hawlett), Arnold, London, pp. 300-342.
El-Sayed, H.A. et al. (1997) Effect of silicate fume incorporation in concrete on
corrosion protection of embedded reinforcement, in Proceedings 10th ICCC,
Göteborg, paper 41v014.
Faucon, P. et al. (1996) Leaching of cement: study of the surface layer. Cement and
Concrete Research 26, 1707-1715.
Faucon, P. et al. (1997) Contribution of magnetic nuclear resonance techniques to the
study of cement paste water degradation, in Proceedings 10th ICCC, Göteborg, paper
3v003.
Faucon, P. et al. (1998) Long-term behaviour of cement pastes used for nuclear waste
disposal: review of physico-chemical mechanism of water degradation. Cement and
Concrete Research 28, 847-857.
Giergiczny, Z. (1997) Sulphate resistance of cements with mineral admixtures, in
Proceedings 10th ICCC, Göteborg, paper 4iv019.
Gollop, R.S., and Taylor, H.F.W. (1992-1996) Microstructural and microanalytical
studies on sulfate attack. Cement and Concrete Research 22, 1027-1037; 24, 1347-
1358; 25, 1580-1589; 26, 1013-1028, 1029-1044.
Irassar, F., and Batic, O. (1989) Effect of low-calcium fly ash on sulphate resistance of
OPC cement. Cement and Concrete Research 19, 194-202.
Jensen, H.U., and Pratt, P.L. (1989) The binding of chloride ions in pozzolanic products
fly ash cement blends. Advances in Cement Research 2, 121-129.
Krizan, D., and Zivanovic, B. (1997) Resistance of fly ash blended cement mortars to
sulphate attack, in Proceedings 10th ICCC, Göteborg, paper 4iv020.
Lota, J.S., Pratt, P.L., and Bensted, J. (1995) A discussion of the paper “Microstructural
and microanalytical studies of sulfate attack” by R.S.Gollop and H.F.W.Taylor.
Cement and Concrete Research 25, 1811-1813.
Lu, C., and Li, R. (1997) Resistance to chemical attack of high performance FKJ
concrete, in Proceedings 10th ICCC, Göteborg, paper 4iv 028.
Madrid, J. et al. (1997) Durability of ordinary Portland cement and ground granulated
blastfurnace slag cement in acid medium, in Proceedings 10th ICCC, Göteborg, paper
4iv040.
Mangat, P.S., and Khatib, J.M. (1992) Influence of initial curing on sulphate resistance of
blended cement concrete. Cement and Concrete Research 22, 1089-1100.
Mangat, P.S., and Khatib, J.M. (1995) Influence of fly ash, silica fume and slag on sulfate
 
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