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Dependence of the strength of a composite material on the reinforcement structure in a plane-stressed state

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Literature cited

  1. A. K. Malmeister, "Geometry of the strength theory," Mekh. Polim., No. 4, 519–526 (1966).

  2. Ya. S. Auzukalns, "Long-term strength of reinforced plastics during compression," Author's Abstract of Candidate's Dissertation, Riga (1974).

  3. J. M. Whitney, "Analysis of the rail shear test. Applications and limitations," J. Compos. Mater., No. 5, 25–34 (1971).

  4. Z. T. Upitis, Ya. A. Brauns, and R. B. Rikards, "Determination of the tensor components of the strength surface by the method of least squares," Mekh. Polim., No. 3, 552–554 (1974).

  5. A. F. Kregers, "Algorithm for finding the minimum of a multivariable function by the steepest descent method. Algorithms and programs," Inform. Byull., No. 2, 9–11 (1974).

  6. T. Ya. Kintsis, A. V. Roze, and I. G. Zhigun, Methods of Static Testing of Reinforced Plastics [in Russian], Riga (1972).

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Institute of Polymer Mechanics, Academy of Sciences of the Latvian SSR, Riga. Translated from Mekhanika Polimerov, No. 6, pp. 1018–1024, November–December, 1976.

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Upitis, Z.T., Rikards, R.B. Dependence of the strength of a composite material on the reinforcement structure in a plane-stressed state. Polymer Mechanics 12, 889–895 (1976). https://doi.org/10.1007/BF00856487

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  • DOI: https://doi.org/10.1007/BF00856487

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