Civil Engineering Reference
In-Depth Information
Saad, M. et al. (1996) Effect of temperature on physical and mechanical properties of
concrete containing silica fume. Cement and Concrete Research 26, 669-675.
Salvador, S. (1995) Pozzolanic properties of fly ash—calcined kaolinite: a comparative
study with soak-calcined products. Cement and Concrete Research 25, 102-112.
Samarin, A., Munn, R.L., and Ashby, J.B. (1983) Ash in concrete: Australian experience.
ACI SP-79(1), pp. 143-172.
Sanches de Rojas, M.I., and Frias, M. (1996) The pozzolanic activity of different
materials: its influence on the hydration heat in mortars. Cement and Concrete
Research 26, 203-213.
Sanches de Rojas, M.I., Rivera, J., and Frias, M. (1999) Influence of the microsilica state
on pozzolanic reaction rate. Cement and Concrete Research 29, 945-949.
Sarkar, S.I., and Xu, A. (1993) Hydration and properties of fly ash concrete, in Mineral
Admixtures in Cement and Concrete (ed. S.N.Ghosh), ABI Books, New Delhi, pp.
174-225.
Shayan, A., Diggins, R., and Ivanusec, I. (1996) Effectiveness of fly ash in preventing
deleterious expansion due to alkali-aggregate reaction in normal and steamcured
concrete. Cement and Concrete Research 26, 153-164.
Shi, C. (1996) Early microstructure development of activated lime—fly ash pastes.
Cement and Concrete Research 26, 1351-1359.
Shi, C., and Day, R.L. (1993) Chemical activation of blended cements made with lime
and natural pozzolana. Cement and Concrete Research 23, 1389-1396.
Singh, M., and Garg, M. (1992) Development of cementitious properties of phos-
phogypsum—fly ash systems, in Proceedings 9th ICCC, New Delhi, Vol. 4, pp. 489-
494.
Solem, J.K., and McCarthy, G.J. (1992) Hydration reactions and ettringite formation in
selected cementitious coal conversion by-products. Materials Research Society
Symposium Proceedings 245, 76-80.
Sugita, S. et al. (1997) On the semi-industrial production of highly reactive rice husk ash
and its effect on cement and concrete properties, in Proceedings 10th ICCC, Göteborg,
paper 3ii109.
Suzuki, T. (1995) Application of high volume fly ash concrete to marine structures.
Chem. Ecol. 10, 249-258.
Swabowski, J., and Galaszewski, J. (1996) Effect of superplasticizers and silica fume on
the workability of high performance concrete (in Polish). Cement-Wapno-Gips
(Warsaw), 212-216.
Tachibana, D. (1990) High strength concrete incorporating several admixtures, in
Proceedings 2nd International Symposium on High Strength Concrete, Berkeley, pp.
309-330.
Tamini, A.K. (1996) The effect of mixing technique on microsilica concrete, in
Production Methods and Workability of Concrete (RILEM Proceedings 32), pp. 27-
33.
Tasdemir, C. et al. (1996) Effects of silica fume and aggregate size on the brittleness of
concrete. Cement and Concrete Research 26, 63-68.
Tenoutasse, N., and Marion, A.M. (1986) Characterization of Belgian fly ashes and their
behavior in cement paste. ACI SP-91, pp. 51-76.
Toutanji, H.A., and El-Korchi, T. (1995) The influence of silica fume on the compressive
strength of cement paste and mortar. Cement and Concrete Research 25, 1591-1602.
Uchikawa, H. (1986) Effect of blending components on hydration and structure
formation, in Proceedings 8th ICCC, Rio de Janeiro, Vol. 1, pp. 249-280.
 
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