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References

[1] C.F. Ferraris, C. Lobo, Processing of HPC, Concrete International, vol. 20 (4), (1998) 61-64

[2] P.F.G. Banfill, Rheology of Fresh Cement and Concrete, E&FN Spon,, London, 1991

[3] D. Beaupré, Rheology of High Performance Shotcrete, Ph. D. Thesis Uni. Of British Columbia (Canada), 1994

[4] F. De Larrard, T. Sedran, C. Hu, J.C. Sitzkar, M. Joly, F. Derkx, F., Evolution of the workability of superplasticized concretes: assessment with BTRHEOM rheometer, in P.J.M. Bartos, D.L. Marrs and D.J. Cleland (Eds), Proceedings of the International RILEM Conference on Production Methods and Workability of Concrete, RILEM, Paisley, 1996, pp. 377-388

[5] C. F. Ferraris, F. de Larrard, N. Martys, Fresh Concrete Rheology - Recent Developments, S. Mindess and J. Skalny (Eds), Material Science of Concrete, Vol VI, ACers, OH (USA), pp 215-241, 2001

[6] C. Hu, Rhéologie des bétons fluides, Etudes et Recherches des Laboratoires des Ponts et Chaussées, OA 16, 1995

[7] C.F. Ferraris, F. de Larrard, Testing and Modelling of Fresh Concrete Rheology, NISTIR 6094, NIST, USA, 1998

[8] C.F. Ferraris, Measurement of the Rheological Properties of High Performance Concrete: State of the Art Report, Journal of Research of NIST, 104 (5), (1999), 461-478

[9] P. Bartos, Fresh Concrete: Properties and Tests, Elsevier, New York, 1992

[10] N.S. Martys, R.D. Mountain, Velocity Verlet Algorithm for Dissipative-particle-dynamics-based models of suspensions, Physical Review E, 59 (3), 1999, 3733-3736

 C.F. Ferraris, Measurement of the rheological properties of cement paste: A new approach , in J.G. Cabrera and R. Rivera-Villareal, Int. RILEM Conf. on The Role of Admixtures in High Performance Concrete, RILEM, Monterrey (Mexico) 1999, pp. 333-342

[12] C.F. Ferraris, J.M. Gaidis, The Connection between the Rheology of Concrete and the Rheology of Cement Paste, ACI Materials Journal, 88 (4), (1992), 388-393

[13] F. Lange, N. Mörtel, V. Rudert, Dense Packing of Cement Pastes and Resulting Consequences on Mortar Properties, Cem. Concr. Res., 27 (10), 1997, 1481-1488

[14] V.S. Ramachandran, Concrete Admixtures Handbook; Properties, Science and Technology, Noyes Publications, 1995

[15] G. Polya, G. Szego, Isoperimetric Inequality in Mathematical Physics, Princeton Uni. Press, Princeton NJ, 1951

[16] E. Sakai, S. Hoshimo, Y. Ohba, M. Daimon, The Fluidity of Cement Paste with Various Types of Inorganic Powders, in Proc. 10th Int. Cong. On the Chemistry of Cement, Sweden, 1997, p. 2ii002 (8pp.)

[17] F. Collins, J.G. Sanjayan, Effects of ultra-fine materials on workability and strength of concrete containing alkali-activated slag as the binder, Cem. Concr. Res., 29, (1999), 459-462

[18] ASTM C305-94, Standard Practice for Mechanical Mixing of Hydraulic Cement Pastes and Mortars of Plastic Consistency, Volume 04.01, 1998

[19] D.L. Kantro, Influence of Water-Reducing Admixtures on Properties of Cement Paste - A Miniature Slump Test, Cement, Concrete and Aggregates, 2. (1980) 95-102

[20] M. Nehdi, S. Mindess, P.-C. Aïtcin, Statistical Modelling of the Microfiller Effect on the Rheology of Composite Pastes, Adv. In Cem. Res., 9 (33) (1997), 37-46

[21] R. Helmuth, L.M. Hills, D.A. Whitting, S. Bhattacharja, Abnormal Concrete Performance in the Presence of Admixtures, PCA R&D Report # 2006, Skokie (USA) (1995)

[22] K. Obla, R. Hill, M.D.A. Thomas, D.R. Hooton, Properties of Concrete Containing Ultra Fine Fly Ash, To be Presented at The Fifth CANMET/ACI International Conference on Durability of Concrete, Barcelona, June 2000


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