TOPOLOGICAL STRUCTURE MODELS OF COMPOSITIONAL MATERIALS BASED ON DIFFERENT BINDERS WITH POWDER FILLERS
Abstract and keywords
Abstract (English):
On the base of the analysis of the well-known researches and present paper author’s researches scientific concepts about the structure of the stones of various bindings with physically and chemically active microfillers were developed and the general and particular models of their structure and structural elements were made.

Keywords:
mineral admixtures, interfacial layer, cement, lime, gypsum, polymer, минеральные добавки, граничная зона, межфазный слой, цемент, известь, гипс, полимер
References

1. H.G. Smolczyk, “Slag structure and identification of slags”, Proceedings of 7th International Congress on the Chemistry of Cement, Paris, 1980.

2. P.K. Mehta, “Pozzolanic and cementitous by-products as mineral admixtures for concrete - a critical review”, Proceedings of International conference on the use of fly ash, slags and silica fume in concrete, Montebello, 1983.

3. B. Lothenbach, K. Scrivener and R.D. Hooton, “Supplementary cementitious materials”, Cement and Concrete Research, Vol.41, 2011, pp. 1244-1256.

4. P. Lawrence, M. Cyr and E. Ringot, “Mineral admixtures in mortars: Effect of inert materials on short-term hydration”, Cement and concrete research, Vol.33, No. 12, 2003, pp. 1939-1947.

5. M. Cyr, P. Lawrence and E. Ringot, “Efficiency of mineral admixtures in mortars: Quantification of the physical and chemical effects of fine admixtures in relation with compressive strength”, Cement and concrete research, Vol.36, No. 2, 2006, pp. 264-277.

6. L. Struble, J. Skalny, S. Mindess, “A review of the cement-aggregate bond”, Cement and concrete research, Vol.10, No.2, 1980, pp. 277-286.

7. B. Bourdette, E. Ringot and J.P. Ollivier, “Modelling of the transition zone porosity”, Cement and concrete research, Vol. 25, No. 4, 1995, pp. 741-751.

8. V.I. Solomatov, “Cement compositions with binary fillers”, News of university of building construction (in Russian), No. 9, 1995, pp. 32-37.

9. H. Ping, J.J. Beaudoin and R. Brousseau, “Effect of aggregate size on transition zone properties at the portland cement paste interface”, Cement and concrete research, Vol. 21, No. 6, 1991, pp. 999-1005.

10. J. Benezet, A. Benhassaine, “Contribution of different granulometric populations to powder reactivity”, Particuology, Vol. 7, No. 1, 2009, pp. 39-44.

11. J. Benezet, A. Benhassaine, “The influence of particle size on the pozzolanic reactivity of quartz powder”, Powder Technology, Vol. 103, 1999, pp. 26-29.

12. Y. Wang, G. Ye, “Effect of micronized sands on the water permeability of cementitious material”, Proceedings of the XIII International Congress on the Chemistry of cement, Madrid, 2011, p.103.

13. P.T. Quyen, “The Hydration of the blended cement with micronized sand”, Proceedings of the XIII International Congress on the Chemistry of cement, Madrid, 2011, p.258.

14. A.R. Jayapalan, B.Y. Lee and K.E. Kurtis, “Can nanotechnology be ‘green’? Comparing efficacy of nano and microparticles in cementitious materials”, Cement and concrete composites, Vol. 36, 2013, pp. 16-24.

15. P.I. Bajenov, “Technology of autoclave materials”, Stroiizdat, St. Petersburg, 1978.

16. J.S. Dolado, K. Van Brougel, “Recent advances in modeling for cementitious materials”, Cement and concrete research, Vol. 41, 2011, pp. 711-726.

17. F.H. Wittmann, “On the development of models and their application in concrete science”, Proceedings of International RILEM symposium CONMOD'08, Delft, 2008, pp.1-11.

18. M. Stroeven, “Discrete numerical modeling of composite materials”, Ph.D. dissertation, Delft, 1999.

19. A.H. Barbosa, A.M.P. Carneiro, “Micromechanical modeling of the elastic modulus of the ITZ of concrete”, Proceedings of International RILEM conference on materials sciences, Aachen, 2010, pp. 101-20.

20. Y. Ye, X. Yang and C. Chen, “Experimental researches on visco-elastoplastic constitutive model of asphalt mastic”, Construction and Building Materials, Vol. 23, No. 10, 2009, pp. 3161-3165.

21. J.W. Bullard, P.E. Stutzman, “Analysis of CCRL proficiency cements 151 and 152 using the Virtual Cement and Concrete Testing Laboratory”, Cement and Concrete Research, Vol. 36, No. 8, 2006, pp. 1548-1555.

22. N.R. Rakhimova, “Alkali-activated cement and concretes with silicate and aluminosilicate admixtures. D.Sc. dissertation, Kazan State University of Architecture and Engineering, Kazan, 2010.

23. N. Rakhimova, R. Rakhimov, “Properties of the slag-alkaline bindings - specific surface and granulometric distribution of ground blast furnace slags relation”, Proceedings of 17. Internationale Baustofftagung. Tagungsbericht, Weimar, 2009, pp. 2/0013-0018.

24. R. Rakhimov, N. Rakhimova, “Properties composition and structure of slag-alkaline stone with microsilica addition”, Proceedings of International symposium Non-traditional Cement & Concrete III, Brno, 2008, pp. 647-652.

25. V.N. Vinogradov, “Influence of fillers on the properties of concrete”, Stroiizdat, Moscow, 1979.

26. O.P. Mchedlov-Petrosyan, “Chemistry of inorganic building materials”, Stroiizdat, Moscow, 1988.

27. V.B. Ratinov, “Additives in concrete”, Stroiizdat, Moscow, 1989.

28. M.G. Altykis, “Experimental and theoretical basis for blended and multiphase binders for dry mixes and materials”, D.Sc. dissertation, Kazan State University of Architecture and Engineering, Kazan, 2003.

29. G.I. Yakovlev, “Structure and properties of interfacial layers in the hardening of building composites on the basis of industrial waste”, D.Sc. dissertation, Izhevsk State University, Izhevsk, 2001.

30. P.I. Grekov, “Effect of active mineral additions on the structure and physical-mechanical properties of lime-siliceous products”, D.Sc. dissertation, Chelyabinsk State University, Chelyabinsk, 1997.

31. I.A. Rybyev, T.A. Arefyeva and N.S. Baskakov, “The overall course of construction materials”, Higher School, Moscow, 1987.

Login or Create
* Forgot password?