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9. REFERENCES

1. Tattersall, G.H. (1991) Workability and Quality-Control of Concrete, E & FN SPON, London.

2. Wallevik, O. (1990) "Den ferske betongens reologi og anvendelse pa betong med og uten tilsetning av silikaastov," Ph.D. Thesis, University of Trondheim NTH.

3. Hu, C., DeLarrard, F., and Gjorv, O.E. (1995) Rheological Testing and Modelling of Fresh High-Performance Concrete, Materials and Structures, Vol. 28, pp. 1-7.

4. DeLarrard, F., Hu, C., Sedran, T., Sitzkar, J.C., Joly, M., Claux, F., and Derkx, F. (1997) A New Rheometer for Soft-to-Fluid Fresh Concrete, ACI Materials Journal, Vol. 94 (3), May-June, pp. 234-243.

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

6. Huynh, T. (1996) "La compatibilite ciment-adjuvant. Etude bibliographique" Bulletin des Laboratoire des Ponts et Chaussees, No. 206, pp. 63-74, November-December.

7. Hu, C. (1995) "Rheologie des betons fluides," Etudes et Recherches des Laboratoires des Ponts et Chaussees, OA 16, 203 p., Paris, France.

8. DeLarrard, F., Szitkar, J.C., Hu, C., and Joly, M. (1994) "Design of a Rheometer for fluid concretes," Proceedings of the International RILEM Workshop Special Concretes: Workability and Mixing, Ed. P.J.M. Bartos, E & FN Spon, pp. 201-208.

9. Tanigawa, Y., and Mori, H. (1989) Analytical Study of Deformation of Fresh Concrete, Journal of Engineering Mechanics, Vol. 115, (3), March.

10. Tanigawa, Y., Mori, H., and Watanabe, K. (1991) Analytical and Experimental Studies on Casting of Fresh Concrete into Wall Form, Transcription of the Japan Concrete Society, Vol. 13.

11. "Standard Test Method for Specific Gravity and Absorption of Fine Aggregate," ASTM C128-93, Annual Book of ASTM Standards Vol. 04.02.

12. "Standard Test Method for Specific Gravity and Absorption of Coarse Aggregate," ASTM C127-88, Annual Book of ASTM Standards, Vol. 04.02.

13. Sedran, T., and DeLarrard, F. (1996) "RENE-LCPC: a software to optimize the mix-design of High-Performance Concrete," BHP 96, 4th International Symposium on the Utilization of High-Strength/High-Performance Concrete, Eds. F. DeLarrard and R. Lacroix, Paris, May, pp. 169-178.

14. "Standard Specification for Portland Cement," ASTM C150-95, Annual Book of ASTM Standards, Vol. 04.01.

15. EN 196-1 (1987) "Methods of testing cement: Determination of strength".

16. "Standard Test Method for Unit Weight, Yield, and Air Content (Gravimetric) of Concrete," ASTM C138-92, Annual Book of ASTM Standards, Vol. 04.02.

17. "Standard Test Method for Slump of Hydraulic Cement Concrete," ASTM C143-90, Annual Book of ASTM Standards, Vol. 04.02.

18. Tang, F.J., and Bhattacharja, S. (1996) Development of an Early Stiffening Test, PCA Research and Development, RP 346.

19. DeLarrard, F., Bosc, F., Catherine, C., and DeFlorenne, F. (1997) The AFREM Method for Mix-Design of High-Performance Concrete, Materials and Structures, Vol. 30 No. 201, pp. 439-446, August-September.

20. Yonezawa, T., Izumi, I., Okuno, T., Sugimoto, M., Shimono, T., and Asakura, E. (1992) "Reducing the Viscosity of High-Strength Concrete Using Silica Fume", 4th CANMET/ACI Conference on Fly Ash, Silica Fume, Slag and Natural Pozzolans in Concrete, Supplementary papers, Istanbul, May.

21. Coussot, P., and Piau, J.-M. (1995) A Large-Scale Field Coaxial Cylinder Rheometer for the Study of the Rheology of Natural Coarse Suspensions, Journal of Rheology, Vol. 39, pp. 104-123.

22. Bird, R.B., Dai, G.C., and Yarusso, B.J. (1982) The Rheology and Flow of Viscoplastic Materials Rev. Chem. Eng., Vol. 1, 1-70.

23. Pashias, N., Boger, D.V., Sumers, J., and Glenister, D.J. (1996) A Fifty Cent Rheometer for Yield Stress Measurements, J. Rheol., Vol. 40 No. 6, November-December.

24. Sedran, T. (1995) "Les Betons Autonivelants. Synthese Bibliographique," Bulletin de Liaison des Laboratoires des Ponts et Chaussees, No. 196, pp. 53-60, Mars-Avril.

25. Farris, R.J. (1968) Prediction of the Viscosity of Multimodel Suspensions from Unimodal Viscosity Data, Transactions of the Society of Rheology, Vol. 12 No. 2, pp. 281-301.

26. Chang, C., and Powell, R.L. (1994) Effect of Particle Size Distributions on the Rheology of Concentrated Bimodal Suspensions, Journal of Rheology, Vol. 38 No. 1, pp. 85-98, January-Feb.

27. Stovall, T., DeLarrard, F., and Buil, M. (1986) Linear Packing Density Model of Particule Mixtures, Powder Technology, Vol. 48 No. 1, September.

28. DeLarrard, F., Sedran, T., and Angot, D. (1994a) "Prevision de la compacite des melanges granulaires par le modele de suspension solide. I: Fondements theoriques et calibration du modele," Bulletin de Liaison des Laboratiores des Ponts et Chaussees, No. 194, Novembre-Decembre.

29. DeLarrard, F., Sedran, T., and Angot, D. (1994b) "Prevision de la compacite des melanges granulaires par le modele de suspension solide. II: Validations et cas des melanges confines," Bulletin de Liaison des Laboratiores des Ponts et Chaussees, No. 194, Novembre-Decembre.

30. Joisel, A. (1952) "Composition des betons hydrauliques," Annales de l'ITTBTP, 5eme annee, No. 58, Serie: Beton. Beton Arme (XXI), October.

31. Kantha Rao, V.V.L., and Krishnamoothy, S. (1993) Aggregate Mixtures for Least-Void Content for Use in Polymer Concrete, Cement, Concrete and Aggregates, CCAGDP, Vol. 15 No. 2, Winter, pp. 97-107.

32. LeComte, A., and Zennir, A., "Modele de suspension solide et granulats calcaires de Lorraine," to appear in Bulletin des Laboratoires des Ponts et Chaussees.

33. DeLarrard, F. (1998) "Concrete Mixture Proportioning: A Scientific Approach," Modern Concrete Technology Series, E & FN Spon, to be published.

34. Perlo, S. (1995) "Validation du model de suspensoin solide pour les coulis a base de ciment et d'addition minerale," Memoire de DEA, ENS de Cachan, Juin.

35. Sedran, T. (1997) private communication, LCPC.

36. Hobbs, D.W. (1976) Influence of Aggregate Volume Concentration Upon the Workability of Concrete and Some Predictions from the Viscosity-Elasticity Analogy, Magazine of Concrete Reserach, Vol. 28 No. 97, December.

37. Murata, J., and Kikukawa, H. (1992) Viscosity Equation for Fresh Concrete, ACI Materials Journal, Vol. 89 No. 3, May-June.

38. Szecsy, R.S. (1997) Concrete Rheology, Ph.D. Thesis, University of Illinois, Urbana-Champaign.

39. Ferraris, C.F., and Gaidis, J.M. (1992) Connection Between the Rheology of Concrete and Rheology of Cement Paste, ACI Materials Journal, Vol. 89 No. 4, pp. 388-393.

40. Day, K.W. (1995) Concrete Mix Design, Quality Control and Specification, E & FN Spon, 350 p.

41. Buil, M., Witier, P., DeLarrard, F., Detrez, M., Paillere, A.M., (1986) "Physico-Chemical Mechanism of the Action of the Naphtalene-Sulfonate Based HRWRAs on Silica Fume Concretes," 2nd International ACI-CANMET Conference on Fly Ash, Silica Fume, Slag, and Natural Pozzolans in Concrete, ACI SP 91, Madrid.

42. Ferraris, C.F. (1996) Measurement of Rheological Properties of High-Performance Concrete: State-of-the-Art Report, NISTIR 5869, U.S. Dept. of Commerce, 33 p., July.

43. Bartos, P. (1992) Fresh Concrete: Properties and Tests, Elsevier.

44. Sedran, T., and DeLarrard, F. (1996) "Mix Design of Self-Compacting Concrete," Proceedings of the International RILEM Conference on Production Methods and Workability of Concrete, Paisley, Ed. P.J.M. Bartos, D.L. Marr, and D.J. Cleland, pp. 439-450, June.


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