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Optimum designing of heat-protective laminated polymer structures

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Mechanics of Composite Materials Aims and scope

Conclusions

  1. 1.

    The use of light polymeric barrier structures makes urgent the problem of designing laminated barriers of maximum resistance to temperature fluctuations.

  2. 2.

    The building of such structures can be accomplished by selecting-materials with different thermal properties, by a suitable choice of the relative layer thicknesses, the order in which they alternate, as well as the total number of layers.

  3. 3.

    An algorithm, based on the theory of optimum control, enables the problem of constructing the optimum polymeric heat-resistant barriers to be solved.

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Literature cited

  1. S. I. Muromov, Theoretical Temperature of the External Air and the Heat Resistance of Barriers [in Russian], Moscow (1939).

  2. A. M. Shklover, Heat Transfer under Intermittent Thermal Effects [in Russian], Moscow-Leningrad (1961).

  3. G. G. Popov, A. T. Timoshenko, and D. N. Tolstyakov, “A numerical study of the heat resistance of light barrier structures,” in: The Thermal and Mass-Transfer Properties of Hygroscopic Materials [in Russian], Yakutsk (1977), pp. 14–24.

  4. A. M. Shklover, A Method of Computing Monolayer and Laminated Barrier Structures of Building for Heat Resistance [in Russian], Moscow (1945).

  5. I. M. Zhuk and L. P. Minchenkova, Heat-Engineering Computation of External Barriers [in Russian], Minsk (1975).

  6. L. I. Rozonoer, “The principles of the L. S. Pontryagin maximum in the theory of optimum systems. I–III,” Avtom. Telemekh.,20, No. 10, 1320; No. 11, 1441; No. 12, 1561 (1959).

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Translated from Mekhanika Kompozitnykh Materialov, No. 3, pp. 480–485, May–June, 1981.

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Babe, G.D., Gusev, E.L. Optimum designing of heat-protective laminated polymer structures. Mech Compos Mater 17, 325–329 (1981). https://doi.org/10.1007/BF00605074

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  • DOI: https://doi.org/10.1007/BF00605074

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