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Bibliography

1
Bentz, D.P., A Three-Dimensional Cement Hydration and Microstructure Program. I. Hydration Rate, Heat of Hydration, and Chemical Shrinkage, NISTIR 5756, U.S. Department of Commerce, November 1995 (available from National Technical Information Service).

2
Bentz, D.P., Three-Dimensional Computer Simulation of Portland Cement Hydration and Microstructure Development Journal of the American Ceramic Society, 80 (1), 3-21, 1997.

3
Bentz, D.P., Modelling Cement Microstructure: Pixels, Particles, and Property Prediction Materials and Structures, 32, 187-195, 1999.

4
Bentz, D.P., Guide to Using CEMHYD3D: A Three-Dimensional Cement Hydration and Microstructure Development Modelling Package, NISTIR 5977, U.S. Department of Commerce, February 1997.

5
Bentz, D.P., and Remond, S., Incorporation of Fly Ash into a 3-D Cement Hydration Microstructure Model, NISTIR 6050, U.S. Department of Commerce, August 1997.

6
Remond, S., "Evolution de la microstructure des betons contenant des dechets au cours de la lixiviation," Ph. D. thesis, L'ecole Normale Superieure de Cachan, 1998.

7
Matte, V., "Durabilite des betons a ultra hautes performances: role de la matrice cimentaire," Ph. D. thesis, L'ecole Normale Superieure de Cachan, 1999.

8
Bentz, D.P., Clifton, J.R., and Snyder, K.A., A Prototype Computer-Integrated Knowledge System: Predicting Service Life of Chloride-Exposed Steel-Reinforced Concrete, Concrete International, 18 (12), 42-47, 1996.

9
Cement and Concrete Reference Laboratory Proficiency Sample Program: Final Report Portland Cement Proficiency Samples Number 133 and Number 134, Cement and Concrete Reference Laboratory, September, 1999.

10
Bentz, D.P., Garboczi, E.J., Haecker, C.J., and Jensen, O.M., Effects of Cement Particle Size Distribution on Performance Properties of Portland Cement-Based Materials, Cement and Concrete Research, 29 (10), 1663-1671, 1999.

11
Jiang, S.P., Mutin, J.C., and Nonat, A., Cement and Concrete Research , 25 (4), 779-789, 1995.

12
Bentz, D.P., Schlangen, E., and Garboczi, E.J., "Computer Simulation of Interfacial Zone Microstructure and Its Effect on the Properties of Cement-Based Composites," Materials Science of Concrete IV, edited by Jan P. Skalny and Sidney Mindess (American Ceramic Society, Westerville, OH, 1995), pp. 155-200.

13
Stauffer, D., Introduction to Percolation Theory (Taylor and Francis, London, 1985).

14
Law, A.M, and Kelton, W.D., Simulation Modeling and Analysis (McGraw-Hill, New York, 1982).

15
Taylor, H.F.W., Cement Chemistry (Academic Press, London, 1990).

16
Bentz, D.P. and Martys, N.S., Hydraulic Radius and Transport in Reconstructed Model Three-Dimensional Porous Media, Transport in Porous Media, 17 (3), 221-238, 1995.

17
Bullard, J.W., Garboczi, E.J., Carter, W.C., and Fuller, E.R., Numerical Methods for Computing Interfacial Mean Curvature, Computational Materials Science, 4, 1-14, 1995.

18
Nonat, A., Materials and Structures, 27, 187-195, 1994.

19
Uchikawa, H., Uchida, S., and Hanehara, S., Cement and Concrete Research, 14, 645-656, 1984.

20
Odler, I., and Abdul-Maula, S., Cement and Concrete Research, 17, 22-30, 1987.

21
Haecker, C.J., unpublished results, 1999.

22
Bentur, A., Berger, R.L., Kung, K.H., Milestone, N.B., and Young, J.F., Journal of the American Ceramic Society, 62 (7/8), 362-366, 1974.

23
Geiker, M., Studies of Portland Cement Hydration: Measurements of Chemical Shrinkage and a Systematic Evaluation of Hydration Curves by Means of the Dispersion Model, Ph. D. Thesis, Technical University of Denmark, Lyngby, DENMARK, 1983.

24
Bentz, D.P., Waller, V., and deLarrard, F., Prediction of Adiabatic Temperature Rise in Conventional and High-Performance Concretes Using a 3-D Microstructural Model, Cement and Concrete Research, 28 (2), 285-297, 1998.

25
Bentz, D.P., Jensen, O.M., Coats, A.M., and Glasser, F.P., "Influence of Silica Fume on Diffusivity in Cement-Based Materials. I. Experimental and Computer Modelling Studies on Cement Paste," Cement and Concrete Research, 30, 953-962, 2000.

26
Waller, V., DeLarrard, F., and Roussel, P., "Modelling the Temperature Rise in Massive HPC Structures," 4th International Symposium on Utilization of High-Strength/High-Performance Concrete, Paris, Paper 170, 415-421, 1996.

27
Carino, N.J., Knab, L.I., and Clifton, J.R., Applicability of the Maturity Method to High-Performance Concrete, NISTIR 4819, U.S. Department of Commerce, May 1992.

28
Carino, N.J., unpublished results, 1999.

29
Powers, T.C., in 4th ISCC, Vol. 2, p. 577, 1962.

30
Annual Book of ASTM Standards, Vol. 04.01. Cement; Lime; Gypsum (ASTM, Philadelphia, PA, 1998).

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