Page 422 - Handbook of Thermal Analysis of Construction Materials
P. 422

References                                                   399


                               24. Midgley, H. G., and Pettifer, K., Electron Optical Study of Hydrated High
                                   Al O  Cement Pastes, Trans. Br. Ceram. Soc., 71:55–60 (1972)
                                     2  3
                               25. Ramachandran, V. S., and Feldman, R. F., Significance of Low Water-
                                   Solid Ratio and Temperature on the Physico-Mechanical Characteristics
                                   of Hydrates of Tricalcium Aluminate, J. Appl. Chem. Biotech., 23:625–
                                   633 (1972)
                               26. Ramachandran, V. S., and Feldman, R. F., Hydration Characteristics of
                                   Monocalcium Aluminate at a Low Water-Solid Ratio, Cem. Concr. Res.,
                                   3:729–750 (1973)
                               27. George, G. M., Aluminous Cements—A Review of Recent Literature,
                                         th
                                   Proc. 7  Int. Congr. Chem. Cement, 1:V-1/3–V-1/26 (1980)
                               28. Ramachandran, V. S., and Beaudoin, J. J., Significance of Water-Solid
                                   Ratio and Temperature on the Physico-Mechanical Characteristics of
                                   Hydrating 4CaO•Al O •Fe O , J. Mater. Sci., 11:1893–1910 (1976)
                                                   2  3  2  3
                               29. Lehman, H., and Lecks, K. J., Tonin, Ztg., 87:29–36 (1963)
                               30. Sereda, P. J., Feldman, R. F., and Ramachandran, V. S., Structure Formation
                                                                            th
                                   and Development in Hardened Cement Pastes, 7  Int. Congr. Cement
                                   Chem., Paris, I:V1-1/3–V1-1/43 (1980)
                               31. Wells, L. S., and Carson, E. T., Hydration of Aluminous Cements and Its
                                   Relation to the Phase Equilibria in the System Lime-Alumina: Water, J.
                                   Res. Natl. Bus. Stand., 57:335–353 (1956)
                               32. Fu, Y., Ding, J., and Beaudoin, J. J., Conversion Preventing Additive for
                                   High Alumina Cement Products, p. 13, U.S. Patent 5,624,489 (1997)
                               33. Ma, W., Brown, P. W., Hydration of Sodium Phosphate-Modified High
                                   Alumina Cement, J. Mater. Res., 9:1291–1297 (1994)
                               34. Ma, W., and Brown, P., Mechanical Behavior and Microstructural
                                   Development in Phosphate Modified High Alumina Cement, Cement Concr.
                                   Res., 22:1192–200 (1992)
                               35. Neville, A. M., and Brooks, J. J., Concrete Technology, p. 438, Longman
                                   Scientific and Technical, J. Wiley & Sons, New York (1987)
                               36. Lafuma, H., Les Aluminates de Calcium et la Chimie des Ciments, Le
                                   Ciment, 30:174 (1925)
                               37. Thomas, W. N., Roy, J., Ciments Fondu and Mixtures of Cement Fondu
                                   and Portland Cement, Inst. Brit. Architect, 31(20):670–675 (1924)
                               38. Touche, M., Note sur l’emploi du ciment, Fondu sur la Ligne de Nice a
                                   Com, Le Ciment, 31:240 (1926)
                               39. Lea, F. M., and Desch, C. H., The Chemistry of Cement and Concrete,
                                   Edward Arnold Pub. Ltd., London, Ch. XVI, p. 426 (1956)
   417   418   419   420   421   422   423   424   425   426   427