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Testing the interlaminar shear strength of laminated reinforced plastics

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Polymer Mechanics Aims and scope

Abstract

An improved method of determining the interlaminar shear strength of reinforced plastics from the results of mechanical bending tests on beams of different lengths is described and the results of an experimental verification of the method on glass-reinforced textolite and longitudinal-transverse-wound (LTW) glass-reinforced plastic are presented.

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Literature cited

  1. V. A. Latishenko, Methods of Predicting the Stiffness and Strength of Materials [in Russian], Riga (1968).

  2. Yu. M. Tarnopol'skii, ed., Static Testing Methods for Reinforced Plastics. A Handbook [in Russian], Riga (1972).

  3. Yu. V. Nemirovskii and B. S. Reznikov, Mekhan. Polim., No. 4, 698 (1973).

  4. A. K. Malmeister, V. P. Tamuzh, and G. A. Teters, Strength of Rigid Polymeric Materials [in Russian], 2nd ed., Riga (1972).

  5. I. I. Gol'denblat, and V. A. Kopnov, Criteria of the Strength and Plasticity of Structural Materials [in Russian], Moscow (1968).

  6. P. M. Ogibalov and Yu. V. Suvorova, Mechanics of Reinforced Plastics [in Russian], Moscow (1965).

  7. E. I. Pustyl'nik, Statistical Methods of Data Analysis [in Russian], Moscow (1968).

  8. E. K. Ashkenazi, Anisotropy of Machine-Building Materials [in Russian], Leningrad (1969).

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Additional information

Institute of Polymer Mechanics, Academy of Sciences of the Latvian SSR, Riga. Translated from Mekhanika Polimerov, No. 2, pp. 340–347, March–April, 1974.

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Sandalov, A.V., Medvedev, M.Z. Testing the interlaminar shear strength of laminated reinforced plastics. Polymer Mechanics 10, 284–289 (1974). https://doi.org/10.1007/BF00860828

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  • DOI: https://doi.org/10.1007/BF00860828

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