Page 377 - Handbook of Thermal Analysis of Construction Materials
P. 377
References 353
93. Cook, D. J., Morgan, D. R., Sirivivatnan, V., and Chaplin, R. P., Differential
Thermal Analysis of Premixed Polymer Cement Materials, Cement Concr.
Res., 6:757–764 (1976)
94. Ramachandran, V. S., and Sereda, P. J., Differential Thermal Studies of
Polymethyl Methacrylate-Impregnated Cement Pastes, Thermochimica Acta,
5:443–450 (1973)
95. Bhatty, J. I., Dollimore, D., Gamlen, G. A., Mangabhai, R. J., and Olmez,
H., Estimation of Calcium Hydroxide in OPC, OPC/PFA and OPC/PFA/
Polymer Modified Systems, Thermochimica Acta, 106:115–123 (1986)
96. Marwin, T., Pera, J., and Ambroise, J., The Action of Some Aggressive
Solutions on Portland and Calcined Laterite Blended Cement Concrete, 4 th
CANMET/ACI Int. Conf. on Fly Ash, Silica Fume, Slag and Natural
Pozzolans in Concr., (V. M. Malhotra, ed.), SP-132:763–779 (1992)
97. Pera, J., and Momtazi, A. S., Pozzolanic Activity of Calcined Mud.,
CANMET/ACI Int. Conf. on Fly Ash, Silica Fume, Slag and Natural
Pozzolans in Concr, (V. M. Malhotra, ed.), Vol. 1, SP-132:749–761
(1992)
98. Fukudome, K., Shintani, T., Kita, T., and Sasaki, H., Utilization of Coal
Ash Produced from Pressurized Fluidized Combustion Power Plant as a
Concrete Mineral Admixture, CANMET/ACI Int. Conf. on Fly Ash, Silica
Fume, Slag and Natural Pozzolans in Concr., (V. M. Malhotra, ed.), SP-
178:522–544 (1998)
99. Chandra, S., Waste Materials Used in Concrete Manufacturing, p. 651,
Noyes Publ., NJ (1997)