Mechanics of Composite Materials

, Volume 26, Issue 6, pp 807–811 | Cite as

Numeric analysis of the deformation of flexible shell structures of composite materials under a combined load

  • Ya. M. Grigorenko
  • N. N. Kryukov
  • T. V. Krizhanovskaya


Composite Material Shell Structure Combine Load 
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Literature cited

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    J. Lyubin (ed.), Handbook on Composition Materials [in Russian], 2nd ed., Book 1 — 1988, Book 2 — 1988, Moscow (1988).Google Scholar
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    A. K. Malmeister, V. P. Tamuzh, and G. A. Teters, Strength of Polymeric and Composite Materials [in Russian], Riga (1980).Google Scholar
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    G. A. Teters, R. B. Rikards, and V. L. Narusberg, Optimization of Laminar-Composite Shells [in Russian], Riga (1978).Google Scholar
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    A. A. Dubchenko, S. A. Lur'e, and I. F. Obraztsov, Anisotropic Multilayer Plates and Shells, Results of Science and Engineering. Mechanics of a Deformable Solid [in Russian], No. 15, Moscow (1983), pp. 3–68.Google Scholar
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    Ya. M. Grigorenko, “Solution of problems of the theory of shells by methods of numeric analysis”, Prikl. Mekh., No. 10, 3–22 (1984).Google Scholar
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    A. A. Shapovalov, “On one simplest variant of equations of the geometrically nonlinear theory of thin shells“ Izv. Akad. Nauk SSSR, Mekh. Tverd. Tela, No. 1, 56–62 (1968).Google Scholar
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    S. A. Ambartsymyan, General Theory of Anisotropic Shells [in Russian], Moscow (1974).Google Scholar
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    Ya. M. Grigorenko and N. N. Pryukov, Numeric Solution of Problems of the Statics of Flexible Laminar Shells with Variable Parameters [in Russian], Kiev (1988).Google Scholar

Copyright information

© Plenum Publishing Corporation 1991

Authors and Affiliations

  • Ya. M. Grigorenko
    • 1
  • N. N. Kryukov
    • 1
  • T. V. Krizhanovskaya
    • 1
  1. 1.Institute of MechanicsAcademy of Sciences of the Ukrainian SSRKiev

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