PSI - Issue 28

L.A. Igumnov et al. / Procedia Structural Integrity 28 (2020) 1909–1917 Author name / Structural Integrity Procedia 00 (2019) 000–000

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Abrosimov, N. A., Novosel’tseva, N. A., 2015. Numerical simulation of the level-by-level destruction of cylindrical shells under explosive loading. Mechanics of Composite Materials 51 (4), 579-594. Vasidzu, K., 1987. Varionatial Methods in the Theory of Elasticity and Plasticity [Russian translation], M., Mir, pp. 512. Abrosimov, N. A., Elesin, A. V., Lazarev, L. N., Novosel’tseva, N. A., 2013. Numerical analysis of the strength of glassfiber-reinforced plastic cylindrical shells of different structure at a pulse loading. Probl. Prochn. Plastychn. Mezhvuz. Sborn., N. Novgorod: Publ. house NNGU, Iss. 75 (4), 288-295. Adishchev, V.V., Kornev, V.M., Talzi, L.A., 1983. Estimates of maximum stresses in closed cylindrical vessels under axisymmetric explosive loading. Institute of Hydrodynamics SB AS Russia, Novosibirsk. Dep. in VINITI, №6588-83 Dep. Rusak, V. N., Fedorenko, A. G., Syrunin, M. A., at al., 2002. Ultimate strain and strength of basalt-fiber-reinforced shells under internal explosive loading. Journal of Applied Mechanics and Technical Physics 43(1), 186-195. Ivanov, A. G., Syrunin, M. A., Fedorenko, A. G., 1992. Effect of reinforcement structure on the ultimate strain and strength of shells made of an oriented glass-fiber-reinforced plastic under internal explosive loading. Journal of Applied Mechanics and Technical Physics 4, 130-135.

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