[1] L. Lam, Y.L. Wong, and C.S. Poon, Degree of hydration and
gel/space ratio of high-volume fly ash/cement systems. Cement and Concrete
Research 30 (2000) 747-756.
[2] R. Hardtl, The pozzolanic reaction of fly ash in
connection with different types of
cement, in: H. Justnes (Ed.), Proceedings of the 10th International Conference
on
Chemistry of Cement, Vol III, Amarkai AB and Congrex Göteburg AB, Gothenburg,
Sweden, 1997, pp. 8-15.
[3] J.S. Lumley, R.S. Gollop, G.K. Moir and H.F.W. Taylor,
Degrees of reaction of the slag in some blends with portland cements. Cement and
Concrete Research 26 (1996) 139-151.
[4] J.I. Escalante, L.Y. Gomez, K.K. Johal et al., Reactivity
of blast-furnace slag in portland cement blends hydrated under different
conditions. Cement and Concrete Research 31 (2001) 1403-1409.
[5] A.F. Battagin, Influence of degree of hydration of slag on
slag cements, in: A.K. Mullick (Ed.), Proceedings of the 9th International
Conference on Chemistry of Cement, Vol III, National Council for Cement and
Building Materials, New Delhi, India, 1992, pp. 166-172.
[6] J.C. Gomes, J. Cabrera, and S. Jalali, The degree of
cement hydration determined by backscattered electron imaging, in: M. Cohen, S.
Mindess, J. Skalny (Eds.), Materials Science of Concrete - The Sidney Diamond
Symposium, American Ceramic Society. Westerville, OH, 1998, pp. 109-126.
[7] J.E. Ash, M.G. Hall, J.I. Langford, and M. Mellas,
Estimations of degree of hydration of portland cement pastes. Cement and Concrete
Research 23 (1993) 399-406.
[8] K. O. Kjellsen, R. J. Detwiler, and O. E. Gjorv,
Backscattered electron imaging of cement pastes hydrated at different temperatures.
Cement and Concrete Research 20 (1990) 308-311.
[9] ASTM C1356M–96, Standard test method for quantitative
determination of phases in portland cement clinker by microscopic point-count
procedure.
[10] ASTM C457-98, Standard test method for microscopical
determination of parameters of the air-void system in hardened concrete.
[11] C.F. Ferraris, V.A. Hackley, and A.I. Avilés,
"Measurement of Particle Size Distribution in Portland Cement Powder: Analysis
of ASTM Round-Robin Studies", accepted for publication in ASTM Cement,
Concrete and Aggregates (2004).
[12] D. Bentz, X. Feng, C. Haecker and P. Stutzman,
Analysis
of CCRL proficiency cements 135 and 136 using CEMHYD3D, NIST Internal Report 6545,
August 2000.
[13] H.F.W. Taylor, Cement Chemistry, 2nd edition, Thomas
Telford, London, 1997, p188.
[14] A. Papoulis, Probability, random variables, and
stochastic processes, McGraw-Hill, Inc., New York, 1965.
[15]
http://vcctl.cbt.nist.gov
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Acknowledgements