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Semicrystalline polymers as natural hybrid nanocomposites : reinforcement degree

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
It has been shown that at semicrystalline polymers with devitrificated amorphous phase consideration as natural hybrid nanocomposites their anormalous high reinforcement degree is realized at the expence of crystallites partial recrystallization (mechanical disordering), that means crystalline phase participation in these polymers elastic properties formation. It is obvious, that the proposed mechanism is inapplicable for the description of polymer nanocomposites with inorganic nanofillers.
Rocznik
Strony
625--629
Opis fizyczny
Bibliogr. 20 poz., rys., tab.
Twórcy
  • Dagestan State Pedagogical University, Makhachkala 367003, Yaragskii st., 57, Russian Federation
  • Dagestan State Pedagogical University, Makhachkala 367003, Yaragskii st., 57, Russian Federation
autor
  • Dagestan State Pedagogical University, Makhachkala 367003, Yaragskii st., 57, Russian Federation
autor
  • Institut Inzynierii Materialow Polimerowych i Barwnikow, 55 M. Sklodowskiej-Curie str., 87-100 Torun, Poland
autor
  • N.M. Emanuel Institute of Biochemical Physics, Russian Academy of Sciences, Moscow 119334, Kosygin st., 4, Russian Federation
Bibliografia
  • 1. Narisawa, I. Strength of Polymeric Materials. Chemistry Publishing House (in rus.), Moscow, p. 400 (1987).
  • 2. Bartenev, G.M. and Frenkel, S.Ya. Physics of Polymers. Chemistry Publishing House (in rus.), Moscow, p. 432 (1990).
  • 3. Kozlov, G.V. Recent Patents on Chemical Engineering, 4(1), 53-77 (2011).
  • 4. Kozlov, G.V. and Mikitaev, A.K. Polymers as Natural Nanocomposites: Unrealized Potential. Lambert Academic Publishing, Saarbrücken, p. 323 (2010).
  • 5. Kozlov, G.V., Ovcharenko, E.N. and Mikitaev, A.K. Structure of Polymer Amorphous State (in rus.). RKhTU Publishing House, Moscow, p. 392 (2009).
  • 6. Magomedov, G.M., Kozlov, G.V. and Zaikov, G.E. Structure and Properties of Cross-Linked Polymers. A Smithers Group Company, Shawbury, p. 492 (2011).
  • 7. Tanabe, Y., Strobl, G.R. and Fisher, E.W. Polymer, 27(8), 1147-1153 (1986).
  • 8. Kozlov, G.V., Shetov, R.A. and Mikitaev A.K. Russian Polymer Science (in rus.), 29(5), 1109-1110 (1987).
  • 9. Kozlov, G.V., Shetov, R.A. and Mikitaev A.K. Russian Polymer Science (in rus.), 29(9), 2012-2013 (1987).
  • 10. Pegoretti, A., Dorigato, A. and Penati, A. EXPRESS Polymer Lett., 1(3), 123-131 (2007).
  • 11. Balankin, A.S. Synergetics of Deformable Body. Ministry of Defence SSSR Publishing House, Moscow, p. 404 (1991).
  • 12. Kozlov, G.V. and Sanditov, D.S. Anharmonic Effects and Physical-Mechanical Properties of Polymers. Nauka (Science) Publishing House (in rus.), Novosibirsk, p. 264 (1994).
  • 13. Aharoni, S.M. Macromolecules, 16(9), 1722-1728 (1983).
  • 14. Aharoni, S.M. Macromolecules, 18(12), 2624-2630 (1985).
  • 15. Kalinchev, E.L. and Sakovtseva, M.B. Properties and Processing of Thermoplastics (in rus.). Chemistry Publishing House, Leningrad, p. 288 (1983).
  • 16. Aloev, V.Z. and Kozlov, G.V. Physics of Orientation Phenomena in Polymeric Materials (in rus.). Polygraphservice and T, Nal'chik, p. 288 (2002).
  • 17. Balankin, A.S. and Bugrimov, A.L. Russian Polymer Science (in rus.), 34(5), 129-132 (1992).
  • 18. Graessley, W.W. and Edwards, S.F. Polymer, 22(10), 1329-1334 (1981).
  • 19. Miktaev, A.K., Kozlov, G.V. and Zaikov G.E. Polymer Nanocomposites: Variety of Structural Forms and Applications. Nova Science Publishers, Inc., New York, p. 319 (2008).
  • 20. Liang, Z.-M., Yin, J., Wu, J.-H., Qiu, Z.-X. and He, F.-F. Europ. Polymer J., 40(2), 307-314 (2004).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-c64ca9b3-737b-4726-a9cd-16b8e8b757bc
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