Up: Main
Previous: Summary and Research Needs
-
- 1
- Maso, J.C., "The Bond Between Aggregates and Hydrated
Cement Pastes," Proceedings 7th International Congress on the Chemistry of
Cement, 3-15, 1980.
- 2
- 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," in Materials Science
of Concrete IV, Eds. J.P. Skalny and S. Mindess (American Ceramic Society,
Westerville, OH, 1995) 155-200.
- 3
- Ollivier, J.P., Maso, J.C., and Bourdette, B.,
"Interfacial Transition Zone in Concrete," Journal of Advanced
Cement-Based Materials, 2 (1), 30-38, 1995.
- 4
- Bentz, D.P., Hwang, J.T.G., Hagwood, C., Garboczi,
E.J., Snyder, K.A., Buenfeld, N., and Scrivener, K.L.,
"Interfacial Zone Percolation in Concrete: Effects of Interfacial Zone
Thickness and Aggregate Shape," in Microstructure of Cement-Based
Systems/ Bonding and Interfaces in Cementitious Materials,
MRS Symp. Proc. Vol. 370, 437-442, 1995.
- 5
- Perram, J.W., and Wertheim, M.S., "Statistical Mechanics of Hard
Ellipsoids. I. Overlap Algorithm and the Contact Function," Journal of
Computational Physics, 58, 409-416, 1985.
- 6
- Bentz, D.P., Garboczi, E.J., and Lagergren, E.S.,
"Multi-scale microstructural modelling of concrete diffusivity:
Identification of significant variables,"
ASTM Cement, Concrete, and Aggregates 20, 129-139 (1998).
- 7
- 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.
- 8
- Bentz, D.P.,
"Three-Dimensional Computer Simulation
of Cement Hydration and Microstructure Development," Journal of
the American Ceramic Society, 80 (1), 3-21, 1997.
Newest version of hydration code manual.
- 9
- Hashin, Z.,
"Analysis of Composite Materials: A Survey,"
J. Applied Mech. 50, 481-505 (1983).
- 10
- Torquato, S., "Random heterogeneous media: Microstructure
and improved bounds on effective properties," Appl. Mech. Rev. 44,
37-76 (1991).
- 11
- Garboczi, E.J., and Bentz, D.P., "Multi-Scale
Picture of Concrete and Its Transport Properties: Introduction for
Non-Cement Researchers," NISTIR 5900, U.S. Department of
Commerce, October 1996.
- 12
- van Breugel, K., "Simulation of Hydration and
Formation of Structure in Hardening Cement-Based Materials," Ph. D.
Thesis, Delft University of Technology, The Netherlands, 1991.
- 13
- Bentz, D.P., Garboczi, E.J., and Stutzman, P.E.,
"Computer Modelling of the Interfacial Zone in Concrete," in
Interfaces in Cementitious Composites, Ed. J.C. Maso
(E & FN Spon, London, 1992) pp. 107-116.
- 14
- Garboczi, E.J., and Bentz, D.P.,
"Digital Simulation of the Aggregate-Cement Paste Interfacial Zone in
Concrete," Journal of Materials Research, 6 (1), 196-201, 1991.
- 15
- Grutzek, M.W., Shi, D., Liu, G., and Kwan, S.,
"Computer Simulation of Interfacial Packing in Concrete," Journal of
Materials Science, 28, 3444-3450, 1993.
- 16
- Scrivener, K.L., and Pratt, P.L., "Characterization of
Interfacial Microstructure," in Interfacial Transition Zone in
Concrete, Ed. J.C. Maso (E & FN Spon, London, 1996) 3-17.
- 17
- Breton, D., Carles-Gibergues, A., Ballivy, G., and
Grandet, J., "Contribution to the Formation Mechanism of the Transition
Zone Between Rock-Cement Paste," Cement and Concrete Research,
23, 335-346, 1993.
- 18
- Monteiro, P.J.M., Gjorv, O.E., and Mehta, P.K.,
"Microstructure of the Steel-Cement Paste Interface in the Presence
of Chlorides," Cement and Concrete Research, 15, 781-784, 1985.
- 19
- Zayed, A.M., "The Nature of the Concrete-Steel Rebar
Interface in Plain and Silica Fume Concrete," in Advanced
Cementitious Systems: Mechanisms and Properties (Materials Research
Society, Pittsburgh, PA, 1992) 341-347.
- 20
- Yuan, C.Z. and Odler, I., "The Interfacial Zone Between
Marble and Tricalcium Silicate Paste," Cement and Concrete Research,
17, 784-792, 1987.
- 21
- Larbi, J.A. and Bijen, J.M.J.M., "Effects of Water-Cement
Ratio, Quantity and Fineness of Sand on the Evolution of Lime in Set
Portland Cement Systems," Cement and Concrete Research, 20,
783-794, 1990.
- 22
- Saito, M. and Kawamura, M., "Effect of Fly Ash and Slag
on the Interfacial Zone Between Cement and Aggregate," in
Fly Ash, Silica Fume, and Natural Pozzolans in Concrete, ACI SP-114,
Edited by V.M. Malhotra (ACI, Detroit, 1989) 669-688.
- 23
- Bentz, D.P., Garboczi, E.J., and Stutzman, P.E.,
"Experimental and Simulation Studies of the Interfacial Zone in
Concrete," Cement and Concrete Research, 22, 891-902, 1992.
- 24
- Bentz, D.P. and Garboczi, E.J.,
"Simulation Studies of the Effects of Mineral Admixtures on the Cement
Paste-Aggregate Interfacial Zone," ACI Materials Journal, 88, 518-529, 1991.
- 25
- Berry, E.E., Hemmings, R.T., Langley, W.S., and
Carrette, G.G., "Beneficiated Fly Ash: Hydration, Microstructure,
and Strength Development in Portland Cement Systems," in
Fly Ash, Silica Fume, and Natural Pozzolans in Concrete,
ACI SP-114, Edited by V.M. Malhotra (ACI, Detroit, 1989) 241-273.
- 26
- Sybertz, F., "Comparison of Different Methods for
Testing the Pozzolanic Activity of Fly Ashes," in
Fly Ash, Silica Fume, and Natural Pozzolans in Concrete,
ACI SP-114, Edited by V.M. Malhotra (ACI, Detroit, 1989) 477-497.
- 27
- Slanicka, S. and Lamacska, S., "The Influence of
Fly Ash Fineness on the Strength of Concrete," Cement and Concrete
Research, 21, 285-296, 1991.
- 28
- Cornelissen, H.A.W. and Gast, C.H., "Upgrading of
PFA for Utilization in Concrete," in
Fly Ash, Silica Fume, and Natural Pozzolans in Concrete,
ACI SP-131, Edited by V.M. Malhotra (ACI, Detroit, 1992) 457-470.
- 29
- Zhang, M.H., Lastra, R., and Malhotra, V.M.,
"Rick-Husk Ash Paste and Concrete: Some Aspects of Hydration and
the Microstructure of the Interfacial Zone Between the Aggregate and
Paste," Cement and Concrete Research, 26 (6), 963-977, 1996.
- 30
- Ollivier, J.P. and Massat, M., "Microstructure of
the Paste-Aggregate Interface, Including the Influence of Mineral
Additions," in Advances in Cement and Concrete
(Engineering Foundation, New York, 1994) 175-185.
- 31
- Scrivener, K.L., Bentur, A., and Pratt, P.L.,
"Quantitative Characterization of the Transition Zone in High Strength
Concretes," Advances in Cement Research, 1 (4), 230-237, 1988.
- 32
- Bentur, A. and Cohen, M.D., "Effect of Condensed Silica
Fume on the Microstructure of the Interfacial Zone in Portland Cement
Mortars," Journal of the American Ceramic Society, 70 (10),
738-743, 1987.
- 33
- Monteiro, P.J.M., Gjorv, O.E., and Mehta, P.K.,
"Effect of Condensed Silica Fume on the Steel-Cement Paste Transition
Zone," Cement and Concrete Research, 19, 114-123, 1989.
- 34
- Lagerblad, B. and Utkin, P., "Silica Granulates in
Concrete- Dispersion and Durabiility Aspects," CBI Report 3:93
(Swedish Cement and Concrete Research Institute, Stockholm, 1993).
- 35
- Zhang, M.H. and Gjorv, O.E., "Microstructure of the
Interfacial Zone Between Lightweight Aggregate and Cement Paste,"
Cement and Concrete Research, 20, 610-618, 1990.
- 36
- Holm, T.A., Bremner, T.W., and Newman, J.B., "Lightweight
Aggregate Concrete Subject to Severe Weathering," Concrete International,
6, 49-54, June 1984.
- 37
- Fagerlund, G., "Frost Resistance of Concrete with
Porous Aggregate," Report of the Cement and Concrete Institute in
Sweden, 1978.
- 38
- Berger, R.L., "Properties of Concrete with Cement
Clinker Aggregate," Cement and Concrete Research, 4, 99-112, 1974.
- 39
- Zimbelmann, R., "A Method for Strengthening the
Bond Between Cement Stone and Aggregates," Cement and Concrete Research,
17, 651-660, 1987.
- 40
- Yang, S., Zhongzi, X., Ping, X., and Mingshu, T.,
"A New Method of Enhancing Cement-Aggregate Interfaces I. Ideal Aggregate
and Its Effect on Interfacial Microstructures," Cement and Concrete
Research, 22, 612-618, 1992.
- 41
- Yang, S., Zhongzi, X., Ping, X., and Mingshu, T.,
"A New Method of Enhancing Cement-Aggregate Interfaces II. Mechanical
Properties and Sulphate Attack Resistances of Mortars," Cement and
Concrete Research, 22, 769-773, 1992.
- 42
- Mitsui, K., Li, Z., Lange, D.A., and Shah, S.P.,
"A Study of Properties of the Paste-Aggregate Interface," in
Interfaces in Cementitious Composites, Edited by J.C. Maso
(E & FN Spon, London, 1992) 119-128.
- 43
- Desai, P.G., Xu, Z., and Lewis, J.A., "Synthesis and
Properties of CaAl2O
4-Coated Al2
O3 Microcomposite
Powders," Journal of the American Ceramic Society, 78
(11), 2881-2888, 1995.
- 44
- Feldman, R.F., "The Effect of Sand/Cement Ratio and
Silica Fume on the Microstructure of Mortars," Cement and Concrete
Research, 16, 31-39, 1986.
- 45
- Winslow, D.N. and Lui, D., "The Pore Structure of
Paste in Concrete," Cement and Concrete Research, 20, 227-235,
1990.
- 46
- Scrivener, K.L. and Nemati, K.M., "The Percolation
of Pore Space in the Cement Paste/Aggregate Interfacial Zone of Concrete,"
Cement and Concrete Research, 26 (1), 35-40, 1996.
- 47
- Torquato, S., "Bulk Properties of Two-Phase Disordered
Media, 1. Cluster Expansion for the Dielectric Constant of Dispersions of
Penetrable Spheres," Journal of Chemical Physics, 81, 5079-5088,
1984.
- 48
- Winslow, D.N., Cohen, M.D., Bentz, D.P., Snyder, K.A.,
and Garboczi, E.J.,
"Percolation and Pore Structure in Mortars and
Concrete," Cement and Concrete Research, 24, 25-37, 1994.
- 49
- Bourdette, B., Ringot, E., and Ollivier, J.P.,
"Modelling of the Transition Zone Porosity," Cement and Concrete
Research, 25 (4), 741-751, 1995.
- 50
- Johansen, V. and Thaulow, N., "At What Scale do
Homogeneous Phenomena Become Localized: The Necessary and Sufficient
Magnification," in The Modelling of Microstructure
and Its Potential for Studying Transport Properties and Durability Edited by
H.M. Jennings et al. (Kluwer Academic Publishers, The Netherlands,
1996) 65-89.
- 51
- Garboczi, E.J. and Bentz, D.P.,
"Multi-scale analytical/numerical theory of the diffusivity of concrete," Advanced Cement-Based Materials 8, 77-88 (1998).
- 52
- Diamond, S., Mindess, S., and Lovell, J., "On the
Spacing Between Aggregate Grains in Concrete and the Dimension of the
Aureole de Transition," in Liaisons Pates de Ciment Materiaux
Associes (RILEM, Toulouse, France, 1982) C42.
- 53
- Lu, B., and Torquato, S., Phys. Rev. A 45, 5530-5544 (1992).
- 54
- E.J. Garboczi and D.P. Bentz,
"Analytical
Formulas for Interfacial Transition Zone Properties"Adv. Cem.-Based Mater. 6, 99-108 (1997).
- 55
- E.J. Garboczi, K.A. Snyder, J.F. Douglas, and
M.F. Thorpe,
"Geometrical percolation threshold of overlapping ellipsoids",
Phys. Rev. E 52, 819-828 (1995).
- 56
- Bentz, D.P., Quenard, D.A., Baroghel-Bouny, V., Garboczi, E.J., and
Jennings, H.M., "Modelling Drying Shrinkage of Cement Paste and Mortar: Part 1. Structural
Models from Nanometers to Millimeters", Materials and Structures 28, 450-58, 1995.
- 57
- Bentz, D.P., Detwiler, R.J., Garboczi, E.J., Halamickova, P., and
Schwartz, L.M., "Multi-Scale Modelling of the Diffusivity of Mortar and Concrete," RILEM International
Conference on Chloride Intrusion into Concrete, 1995.
- 58
- Garboczi, E.J., Schwartz, L.M., and Bentz, D.P.,
"Modelling the influence of the
interfacial zone on the D.C. electrical conductivity of mortar, Journal of
Advanced Cement-Based Materials 2, 169-181, 1995.
- 59
- Schwartz, L.M., Garboczi, E.J.,and Bentz, D.P.,
"Interfacial
transport in porous media: Application to D.C. electrical conductivity of
mortars", Journal of Applied Physics 78,
5898-5908, 1995.
- 60
- J. Shane, T.O. Mason, H.M. Jennings, E.J. Garboczi and D.P. Bentz,
"Effect of the
Interfacial Transition Zone on the Conductivity of Portland Cement Mortars",
Journal of the American Ceramic Society, 83, 1137-1144, 2000.
- 61
- Rashed, A.I., and Williamson, R.B., Journal of Materials Research 6,
2004-2012, 1991.
- 62
- Snyder, K.A., and Clifton, J.R., "Measures of Air Void Spacing,"
in Proceedings - International Conference on Building Materials: Volume 1,
Weimar, Germany, 155-158, 1994.
- 63
- Scrivener, K.L., "Microstructure of Concrete," in Materials Science
of Concrete Vol. I, edited by J. Skalny (American Ceramic Society,
Westerville, Ohio, 1989), pp. 127-161.
- 64
- Garboczi, E.J., and Bentz, D.P.,
"Computer
Simulation of the Diffusivity of Cement-Based Materials", Journal of
Materials Science 27, 2083-2092, 1992.
- 65
- B.J. Christensen, T.O. Mason, H.M. Jennings, D.P. Bentz, and E.J.
Garboczi,
"Experimental and Computer Simulation Results for the DC Electrical
Conductivity of Portland Cement Paste" in Advanced Cementitious Systems:
Mechanisms and Properties Vol. 245, edited by F.P. Glasser, G.J. McCarthy, J.F. Young, T.O. Mason, and P.L. Pratt (Materials Research Society, Pittsburgh,
1992), pp. 259-264.
- 66
- Garboczi, E.J. and Bentz, D.P.,
"The
effect of the interfacial zone on concrete properties: The dilute limit,"
in Materials for the New Millenium, edited by K.P. Chong (ASCE, New
York, 1996), pp. 1228-1237.
- 67
- Mills, R., and Lobo, V.M.M., Self-Diffusion in Electrolyte Solutions (Elsevier,
Amsterdam, 1989) p. 317.
- 68
- Cooper, D.W., Phys. Rev. A 38, 522-524 (1988).
- 69
- Mehta, P.K. and Monteiro, P.J.M., Concrete: Structure, Properties, and
Materials 2nd Ed. (Prentice-Hall, Englewood Cliffs, New Jersey, 1993), pp. 154-159.
- 70
- McLaughlin, R., Int. J. Eng. Sci. 15, 237-244 (1977).
Up: Main Previous:
Summary and Research Needs