Mechanics of Composite Materials

, Volume 24, Issue 3, pp 356–359 | Cite as

Fatigue of epoxy composites with a disperse filler at high loading frequencies

  • A. N. Bobryshev
  • E. N. Kapustyanskii
  • V. I. Solomatov
Article
  • 22 Downloads

Keywords

Fatigue Epoxy High Loading Epoxy Composite Loading Frequency 
These keywords were added by machine and not by the authors. This process is experimental and the keywords may be updated as the learning algorithm improves.

Preview

Unable to display preview. Download preview PDF.

Unable to display preview. Download preview PDF.

Literatire cited

  1. 1.
    Yu. S. Urzhumtsev and S. L. Skalozub, “Acoustic fatigue of polymer materials,” Mekh. Polim., No. 2, 108–126 (1969).Google Scholar
  2. 2.
    V. A. Stepanov, Yu. A. Nikonov, L. A. Belyaeva, and A. S. Vlasov, “Reasons for the reduction of the endurance of polymers in cyclic loading,” Mekh. Polim., No. 2, 279–283 (1976).Google Scholar
  3. 3.
    F. N. Nurmukhamedov, V. G. Dashevskii, A. A. Askadskii, and G. L. Slonimskii, “Examination of the effect of vibrations in the sonic frequency range on the process of stress relaxation in polymers,” Mekh. Polim., No. 4, 579–590 (1976).Google Scholar
  4. 4.
    V. I. Solomatov, A. N. Bobryshev, and A. P. Proshin, “Effect of the dimensional factors of the dispersed filler on the strength of epoxy composites,” Mekh. Kompozitn. Mater., No. 6, 1008–1013 (1982).Google Scholar
  5. 5.
    S. B. Ratner and S. G. Agamalyan, “Effect of loading frequency on the endurance of plastics,” Plast. Massy, No. 12, 66–67 (1982).Google Scholar
  6. 6.
    V. A. Kuz'menko, “High-frequency fatigue testing as a method of accelerated determination of the endurance characterisitcs of materials,” Probl. Prochn., No. 10, 40–43 (1980).Google Scholar
  7. 7.
    V. A. Kuz'menko, “The first international conference on fatigue and corrosion fatigue at higher loading frequencies reaching ultrasonic frequencies,” Probl. Prochn., No. 2, 120–123 (1983).Google Scholar
  8. 8.
    V. K. Samarin, “Possibilities of inspecting the degree of damage in materials on the basis of variation of the frequency of inherent oscillations of specimens,” Probl. Prochn., No. 6, 61–64 (1978).Google Scholar
  9. 9.
    V. R. Regel', “The kinetic concept of strength as a scientific base for predicting the endurance of loaded polymers,” Mekh. Polim., No. 1, 98–122 (1971).Google Scholar
  10. 10.
    V. I. Solomatov, A. N. Bobryshev, and A. P. Proshin, “Metastable states in the structure of polymer composite materials with a dispersed filler,” in: Proceedings of 3rd National Conference on Mechanics and Technology of Composite Materials, Sofia (1982), pp. 121–124.Google Scholar
  11. 11.
    B. I. Shklovskii and A. L. Éfros, “Flow theory and conduction of highly heterogeneous media,” Usp. Fiz. Nauk,117, No. 3, 401–435 (1975).Google Scholar
  12. 12.
    A. M. Leksovskii and B. Gaffarov, “Examination of the kinetics of fatigue failure of polyethylene by IR spectroscopy,” Mekh. Polim., No. 5, 912–915 (1976).Google Scholar

Copyright information

© Plenum Publishing Corporation 1988

Authors and Affiliations

  • A. N. Bobryshev
    • 1
    • 2
  • E. N. Kapustyanskii
    • 1
    • 2
  • V. I. Solomatov
    • 1
    • 2
  1. 1.Penza Plant and Higher Technical School(Branch of the Penza Polytechnical Institute)Penza Engineering and Constructional InstituteUSSR
  2. 2.Moscow Institute of Railroad Transport EngineersUSSR

Personalised recommendations