Polymer Mechanics

, Volume 13, Issue 6, pp 928–930 | Cite as

High-strength glass-reinforced plastic shells with radial orientation of the reinforcement

  • M. A. Koltunov
  • L. V. Pleshkov
  • M. Z. Kanovich
  • S. L. Roginskii
  • V. I. Natrusov
Brief Communications


Radial Orientation Plastic Shell 
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Literature cited

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    S. L. Roginskii, M. Z. Kanovich, M. A. Koltunov, and L. V. Pleshkov, "Effectiveness of radially reinforced bodies of revolution," Mekh. Polim., No. 5, 946–949 (1975).Google Scholar
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    E. K. Ashkenazi, I. V. Gershberg, O. S. Myl'nikova, R. S. Raikhel'gauz, and A. K. Sborovskii, "Experimental investigation of the strength of glass-reinforced plastics in biaxial compression in three planes of symmetry," Mekh. Polim., No. 1, 63–72 (1976).Google Scholar
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    Ya. B. Fridman, Mechanical Properties of Metals [in Russian], Moscow (1946).Google Scholar
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    G. Bridgman, The Physics of High Pressure, Dover (1971).Google Scholar
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    V. V. Khitrov and N. P. Zhmud', "Carrying capacity of radially reinforced thin-walled composite rings operating under pressure," Tekhnol. Sudostr., No. 4, 83–88 (1975).Google Scholar
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    R. Elliot, E. Francois, and D. Macdonald, Radially Reinforced Spheres. US Patent No. 3490638. Applied for January 24, 1966. Published January 20, 1970.Google Scholar
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    E. Francois, Radially Reinforced Cylinders. US Patent No. 3598275. Applied for May 21, 1969. Published August 10, 1971.Google Scholar

Copyright information

© Plenum Publishing Corporation 1978

Authors and Affiliations

  • M. A. Koltunov
  • L. V. Pleshkov
  • M. Z. Kanovich
  • S. L. Roginskii
  • V. I. Natrusov

There are no affiliations available

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