It has been shown that nanofiller particles (aggregates of particles) “chains” in elastomeric nanocomposites are physical fractal within the self-similarity (and, hence, fractality) range ~500-1450 nm. The low dimensions of nanofiller particles (aggregates of particles) structure in elastomeric nanocomposites are due to high fractal dimension of nanofiller initial particles surface.
Nanocomposite, nanofiller, structure, “chains”, fractal analysis, нанокомпозит, нанонаполнитель, структура, “цепи”, фрактальный анализ
1. Lipatov Yu.S. The Physical Chemistry of Filled Polymers. Moscow, Khimiya, 1977, 304 p.
2. Bartenev G.M., Zelenev Yu.V. The Physics and Mechanics of Polymers. Moscow, Vysshaya Shkola, 1983, 391 p.
3. Kozlov G.V., Yanovskii Yu.G., Zaikov G.E. Structure and Properties of Particulate-Filled Polymer Composites: the Fractal Analysis. New York, Nova Science Publishers, Inc., 2010, 282 p.
4. Slonov A.L., Kozlov G.V., Zaikov G.E., Mikitaev A.K. Fraktalniye modeli processa tekuchesti dispersno-napolnennykh kompozitov na osnove polypropilena // Vestnik Kazanskogo technologicheskogo universiteta, 2013. № 20. PP. 115-119
5. Kozlov G.V., Dolbin I.V., Jozef Richert, Stoyanov O.V., Zaikov G.E. Polymers as natural composites: structure and properties // Vestnik Kazanskogo technologicheskogo universiteta, 2013. № 22. PP. 116-136
6. Mikitaev A.K., Kozlov G.V., Zaikov G.E. Polymer Nanocomposites: the Variety of Structural Forms and Applications. New York, Nova Science Publishers, Inc., 2008, 319 p.
7. Kozlov G.V., Mikitaev A.K. Mekhanika Kompozitsionnykh Materialov i Konstruktsii, 1996, v. 2, № 3-4, p. 144-157.
8. Kozlov G.V., Yanovskii Yu.G., Mikitaev A.K. Mekhanika Kompozitnykh Materialov, 1998, v. 34, № 4, p. 539-544.
9. Balankin A.S. Synergetics of Deformable Body. Moscow, Publishers of Ministry Defence SSSR, 1991, 404 p.
10. Hornbogen E. Intern. Mater. Rev., 1989, v. 34, № 6, p. 277-296.
11. Pfeifer P. Appl. Surf. Sci., 1984, v. 18, № 1, p. 146-164.
12. Avnir D., Farin D., Pfeifer P. J. Colloid Interface Sci., 1985, v. 103, № 1, p. 112-123.
13. Ishikawa K. J. Mater. Sci. Lett., 1990, v. 9, № 4, p. 400-402.
14. Ivanova V.S., Balankin A.S., Bunin I.Zh., Oksogoev A.A. Synergetics and Fractals in Material Science. Moscow, Nauka, 1994, 383 p.
15. Vstovskii G.V., Kolmakov L.G., Terent’ev V.F. Metally, 1993, № 4, p. 164-178.
16. Hansen J.P., Skjeitorp A.T. Phys. Rev. B, 1988, v. 38, № 4, p. 2635-2638.
17. Pfeifer P., Avnir D., Farin D. J. Stat. Phys., 1984, v. 36, № 5/6, p. 699-716.
18. Bobryshev A.N., Kozomazov V.N., Babin L.O., Solomatov V.I. Synergetics of Composite Materials. Lipetsk, NPO ORIUS, 1994, 154 p.
19. Farin D., Peleg S., Yavin D., Avnir D. Langmuir, 1985, v. 1, № 4, p. 399-407.