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Composites: Mechanics, Computations, Applications: An International Journal
ESCI SJR: 0.193 SNIP: 0.497 CiteScore™: 0.39

ISSN 印刷: 2152-2057
ISSN オンライン: 2152-2073

Composites: Mechanics, Computations, Applications: An International Journal

DOI: 10.1615/CompMechComputApplIntJ.v1.i2.30
pages 135-168

STEADY-STATE CREEPING OF LAMINATED METAL-COMPOSITE PLATES WITH COMPLEX REINFORCED STRUCTURES IN TRANSVERSE-LONGITUDINAL BENDING

Yu. V. Nemirovskii
Institute of Theoretical and Applied Mechanics, Siberian Branch of the Russian Academy of Sciences, Novosibirsk, Russia
A. P. Yankovskii
Institute of Theoretical and Applied Mechanics, Siberian Branch of the Russian Academy of Sciences, Novosibirsk, Russia

要約

The problem of transverse-longitudinal bending of the Kirchhoff laminated plates of variable thickness reinforced by fibers of constant cross section and working under the conditions of steady-state creeping of all phases of the composition is formulated. A system of resolving equations and the corresponding boundary conditions are analyzed. A method for solving the posed problem is formulated. A way to approximate solution of such problems under the conditions of unsteady creeping is indicated. The conducted specific calculations showed that the rate of deflection of the steady-state creeping of plates greatly depends on the reinforcement structure, separation of carrying layers, and on the type and level of structure loading.

参考

  1. Lekhnitskii, S. G., Anizotropnye plastinki (Anisotropic Plates).

  2. Ambartsumyan, S. A., Teoriya anizotropnykh plastin (The Theory of Anisotropic Plates).

  3. Grigorenko, Ya. M., Izotropnye i neizotropnye sloistye obolochki vrashcheniya peremennoi zhestkosti (Isotropic and Nonisotropic Laminated Shells of Revolution of Variable Rigidity).

  4. Nemirovskii, Yu. V. and Reznikov, B. S., Prochnost elementov konstruktsii iz kompozitnykh materialov (Strength of Structural Elements from Composite Materials).

  5. Andreev, A. N. and Nemirovskii, Yu. V., Mnogosloinye anizotropnye obolochki i plastiny. Izgib, ustoichivost i kolebaniya (Multilayer Anisotropic Shells and Plates. Bending, Steadiness and Vibrations).

  6. Malmeister, A. K., Tamuzh, V. P., and Teters, G. A., Soprotivlenie polimernykh i kompozitnykh materialov (Resistance of Polymer and Composite Materials).

  7. Nemirovskii, Yu. V. and Yankovskii, A. P., Thermoelastoplastic bending of lamellar-fiber plates.

  8. Kachanov, L. M., Teoriya polzuchesti (The Theory of Creeping).

  9. Nemirovskii, Yu. V. and Yankovskii, A. P., Thermal conductivity of fiber shells.

  10. Nemirovskii, Yu. V., Creeping of uniform and composite shells.

  11. Radchenko, V. P. and Saushkin, M. N., Polzuchest i relaksatsiya ostatochnykh napryazhenii v uprochnennykh konstruktsiyakh (Creeping and Relaxation of Residual Stresses in Hardened Structures).

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  13. Nemirovskii, Yu. V. and Yankovskii, A. P., Some special features of the equations of shells reinforced by fibers of a constant cross section.

  14. Kamke, E., Spravochnik po differentsialnym uravneniyam v chastnykh proizvodnykh pervogo poryadka (Handbook on Partial Differential Equations of First Order).

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