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Investigation of the mechanical characteristics of statically loaded unidirectional composite materials

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Literature cited

  1. N. A. Alfutov, A. A. Zinov'ev, and B. G. Popov, Design of Multilayer Plates and Shells of Composition Materials [in Russian], Moscow (1984).

  2. Failure of Structures Formed from Composition Materials [in Russian], Riga (1986).

  3. R. D. Maksimov, E. Z. Plume, and V. M. Ponomarav, “Elasticity characteristics of unidirectional reinforced hybrid composites,” Mekh. Kompozitn. Mater., No. 1, 13–19 (1983).

    Google Scholar 

  4. R. A. Avakyan, I. N. Danilova, O. V. Lebedeva, and T. V. Sokolova, “Comparative analysis of the deformation behavior of wound tubes under a complex load,” Mechanics of Structures Formed from Composition Materials [in Russian], Novosibirsk (1984), pp. 4–10.

  5. M. G. Kamenskii and Yu. M. Molchanov, “Use of the method of thermogravimetric analysis to determine the component content in organic plastics,” Mekh. Kompozitn. Mater., No. 2, 332–336 (1981).

    Google Scholar 

  6. T. A. Teters, Z. T. Upitis, and A. O. Udris, “Mechanoluminescence of the early and limiting stages of fiberglass failure,” Mekh. Kompozitn. Mater., No. 3, 440–449 (1987).

    Google Scholar 

  7. E. V. Meshkov, V. I. Kulik, A. S. Nilov, and Z. T. Upitis, “Effect of production factors on the mechanical characteristics of unidirectional organic plastic,” Mekh. Kompozitn. Mater., No. 3, 528–536 (1990).

    Google Scholar 

  8. V. I. Kulik, E. V. Meshkov, R. B. Rikards, and Z. T. Upitis, “Experimental investigation of the strength of fiberglass with a longitudinal-transverse reinforcing scheme in a plane stress state,” Probl. Prochn., No. 11, 100–106 (1982).

    Google Scholar 

  9. I. G. Zhigun and V. V. Mikhailov, “Characteristic features of the tensile testing of high-strength unidirectional composites,” Mekh. Polim.,4, 717–723 (1978).

    Google Scholar 

  10. I. G. Zhigun, V. A. Polyakov, and V. V. Mikhailov, “Characteristic features of compressive tests of composites,” Mekh. Kompozitn. Mater., No. 6, 1111–1118 (1979).

    Google Scholar 

  11. A. O. Udris and Z. T. Upitis, “Experimental investigation of the elastic and strength properties of epoxy binder EDT-10 in a complex stress state,” Mekh. Kompozitn. Mater., No. 6, 972–978 (1988).

    Google Scholar 

  12. G. M. Gunyaev, Structure and Properties of Polymeric Fibrous Composites [in Russian], Moscow (1981).

  13. P. A. Lagas, “Nonlinear character of the ”stress-strain“ curve for laminar graphite-epoxy plastics,” Aerokosm. Tekhnika, No. 4, 102–111 (1986).

    Google Scholar 

  14. E. V. Meshkov, V. I. Kulik, Z. T. Upitis, and A. S. Nilov, “Deformation of orthogonally reinforced organic plastics in uniaxial tension and compression,” Mekh. Kompozitn. Mater., No. 4, 609–615 (1987).

    Google Scholar 

  15. Handbook on Composition Materials: In two books, Book 1 [in Russian], edited by J. Lyubin, Moscow (1988).

  16. A. M. Stalevich and L. E. Root, “Dependence of the elastic modulus of highly oriented synthetic filaments on the degree of deformation,” Khim. Volokna, No. 5, 36–37 (1980).

    Google Scholar 

  17. E. V. Meshkov, V. I. Kulik, Z. T. Upitis, and R. B. Rikards, “Problem of determining the coefficients in tensor-polynomial failure criteria,” Probl. Prochn., No. 9, 66–72 (1987).

    Google Scholar 

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Translated from Mekhanika Kompozitnykh Materialov, No. 3, pp. 459–467, May–June, 1991.

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Meshkov, E.V., Kulik, V.I., Nilov, A.S. et al. Investigation of the mechanical characteristics of statically loaded unidirectional composite materials. Mech Compos Mater 27, 307–314 (1991). https://doi.org/10.1007/BF00616879

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  • DOI: https://doi.org/10.1007/BF00616879

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