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Bibliography

1
ASTM Annual Book of Standards, Vol. 04.01 Cement; Lime; Gypsum (American Society for Testing and Materials, West Conshohocken, PA) 1999.

2
DIN EN 196, "Pruefverfahren fuer Zement" (Deutsches Institut fuer Normung e.V., Berlin) 1990-1995.

3
Bentz, D.P., and Forney, G.F., "User's Guide to the NIST Virtual Cement and Concrete Testing Laboratory, Version 1.0," NISTIR 6583, U.S. Department of Commerce, November, 2000.

4
Cement and Concrete Reference Laboratory Proficiency Sample Program: Final Report on Portland Cement Proficiency Samples Number 135 and Number 136, Cement and Concrete Reference Laboratory, Gaithersburg, MD, March 2000.

5
Cement and Concrete Reference Laboratory Proficiency Sample Program: Final Report on Portland Cement Proficiency Samples Number 141 and Number 142, Cement and Concrete Reference Laboratory, Gaithersburg, MD, September 2001.

6
Bentz, D.P., and Stutzman, P.E., "SEM Analysis and Computer Modelling of Hydration of Portland Cement Particles," in Petrography of Cementitious Materials, edited by S.M. DeHayes and D. Stark (ASTM, Philadelphia, PA, 1994) p. 60.

7
Bentz, D.P., Stutzman, P.E., Haecker, C.J., and Remond, S., "SEM/X-ray Imaging of Cement-Based Materials," in Proceedings of the 7th Euroseminar on Microscopy Applied to Building Materials, Eds. H.S. Pietersen, J.A. Larbi, and H.H.A. Janssen, Delft University of Technology, pp. 457-466 (1999).

8
Castleman, K.R., Digital Image Processing (Prentice-Hall, Englewood Cliffs, NJ, 1979).

9
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.

10
Bentz, D.P., "CEMHYD3D: A Three-Dimensional Cement Hydration and Microstructure Development Modelling Package. Version 2.0," NISTIR 6485, U.S. Department of Commerce, April 2000.

11
Taylor, H.F.W., Cement Chemistry (Thomas Telford, London, 1997).

12
Bentz, D.P., Feng, X., Haecker, C.J., and Stutzman, P.E., "Analysis of CCRL Proficiency Cements 135 and 136 Using CEMHYD3D," NISTIR 6545, U.S. Department of Commerce, August 2000.

13
Longuet, P., Burglen, L., and Zelwer, A., Revue Materiaux et Constructions, 35, 1973.

14
Geiker, M., "Studies of Portland Cement Hydration: Measurement 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.

15
Powers, T.C., "Adsorption of Water by Portland Cement Paste during the Hardening Process," Industrial and Engineering Chemistry, 27, 790-794, 1935.

16
Taylor, B.N., and Kuyatt, C.E., "Guidelines for Evaluating and Expressing the Uncertainty of NIST Measurement Results," NIST Technical Note No. 1297, U.S. Department of Commerce, Washington, D.C., Sept. 1994.

17
Burrows, R.W., Kepler, W.F., Hurcomb, D., Schaffer, J., and Sellers, G., "Three Simple Tests for Selecting Low-Crack Cement," to appear in Cement and Concrete Composites, November 2002.

18
Snyder, K.A., Feng, X., Keen, B., and Mason, T.O., "Estimating the Electrical Conductivity of Cement Paste Pore Solutions from K+ and Na+ Concentrations," Cement and Concrete Research, 33 (6), 793-798, 2003.

19
Gartner, E.M., Tang, F.J., and Weiss, S.J., "Saturation Factors for Calcium Hydroxide and Calcium Sulfates in Fresh Portland Cement Pastes," Journal of the American Ceramic Society, 68 (12), 667-673, 1985.

20
Bentz, D.P., and Conway, J.T., "Computer Modelling of the Replacement of "Coarse" Cement Particles by Inert Fillers in Low w/c Ratio Concretes: Hydration and Strength," Cement and Concrete Research, 31 (3), 503-506, 2001.


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