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398          Chapter 9 - Non-Portland Cement Binders and Concrete


                                7. Dehua, D., and Chuanmei, Z., The Effect of Aluminate Minerals
                                   on the Phases in Magnesium Oxychloride Cement, Cement Concr.
                                   Res., 26:1203–1211 (1996)
                                8. Matkovic, B., and Young, J. F., Microstructure of Magnesium Oxychloride
                                   Cements, Nat. Phys. Sci., 246:79–80 (1973)
                                9. Beaudoin, J. J., and Ramachandran, V. S., Strength Development in
                                   Magnesium Oxychloride and Other Cements, Cement Concr. Res.,
                                   5:617–630 (1975)
                               10. Tooper, B., and Cartz, L., Structure and Formation of Magnesium
                                   Oxychloride Sorel Cements, Nature, 211:64–66 (1966)
                               11. Srivastova, R. S., and Rai, M., Water-Proofing of Magnesium Oxychloride
                                   Cement and Cement Products, Res. and Ind., 28:203–206 (1983)
                               12. Lu, H. P., Wang, P. L., and Jiang, N. X., Design of Additives for Water-
                                   Resistant Magnesium Oxychloride Cement Using Pattern Recognition,
                                   Mater. Sci. Lett., 20:217–223 (1994)
                               13. Lu, H., and Wang, P., Design of Additives for Water Resistant Magnesium
                                   Oxychloride Cement, J. Inorg. Mater., 8:341–346 (1993)
                               14. Beaudoin, J. J., Ramachandran, V. S., and Feldman, R. F., Impregnation of
                                   Magnesium Oxychloride Cement with Sulfur, Am. Ceram. Soc. Bull.,
                                   56:424–427 (1977)
                               15. Ramachandran, V. S., Feldman, R. F., and Beaudoin, J. J., Concrete
                                   Science, p. 421, Heyden & Sons Ltd. (1981)
                               16. Beaudoin, J. J., and Ramachandran, V. S., Strength Development in
                                   Magnesium Oxysulfate Cement, Cement Concr. Res., 8:103–112 (1978)
                               17. Herrera, M. E., A Comparison of Critical Properties of Magnesium
                                   Oxysulfate and Magnesium Oxychloride Cements as Used in Sprayed Fire
                                   Resistive Coatings, ASTM STP, 826:94–101 (1983)
                               18. Beaudoin, J. J., and Feldman, R. F., The Flow of Helium into the Microspaces
                                   of Magnesium Oxysulfate Cement Paste, Cement Concr. Res., 7:585–596
                                   (1977)
                               19. Bied, J., (J & A Pavin de Lafarge), British Patent No. 8193 (1909)
                               20. Scrivener, K. L., and Capmas, A., Calcium Aluminate Cements in Lea’s
                                                                   th
                                   Chemistry of Cement and Concrete, 4  Ed., (P. C. Hewlett, ed., Ch. 13,
                                   pp. 709–778, Arnold, London (1998)
                               21. Robson, T. D., High Alumina Cements and Concretes, p. 263, Wiley, New
                                   York (1962)
                               22. French, P. J., Montgomery, G. J., and Robson, T. D., High Strength
                                   Concrete Within the Hour, Concr., 5:253–257 (1971)
                               23. Mangabhai, R. J. (ed.), Proc. Int. Symp. Calcium Aluminate Cements,
                                   p. 380, E. & F. N. Spon, London (1990)
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