Computational Investigation of the Effect of Reinforcement Schemes and Angles on the Stress-Strain State and Strength of Composite Cylinders Under Axisymmetric Internal Explosion. Part 1. Effect of the Discretization Spacings of the Computational Domain on the Accuracy of Determination of Stress-Strain State and Strength

Author:

Lepikhin P. P.,Romashchenko V. A.,Beiner O. S.,Tarasovskaya S. A.

Publisher

Springer Science and Business Media LLC

Subject

Mechanics of Materials

Reference20 articles.

1. P. P. Lepikhin and V. A. Romashchenko, Strength of Inhomogeneous Anisotropic Hollow Cylinders under Impulsive Loading [in Russian], Naukova Dumka, Kiev (2014).

2. N. A. Abrosimov and A. V. Elesin, “Mathematical modeling of the progressive fracture of cylindrical composite shells under multiple impulsive loading,” in: Proc. of the XI Int. Conf. on Nonequilibrium Processes in Nozzles and Jets (NPNJ’2016) (May 25–31, 2016, Alushta) [in Russian], MAI, Moscow (2016), pp. 287–289.

3. N. A. Abrosimov and N. A. Novosel’tseva, “Numerical analysis of the progressive fracture process in cylindrical metal-filled plastic shells under impulsive loading,” in: Proc. of the XI Int. Conf. on Nonequilibrium Processes in Nozzles and Jets (NPNJ’ 2016) (May 25–31, 2016, Alushta) [in Russian], MAI, Moscow (20016), pp 289–291.

4. A. I. Abakumov, P. N. Nizovtsev, V. P. Solov’ev, et al., “A computational-experimental study of the stress-strain state of composite shells of revolution under dynamic loading with allowance for large strains,” Mekh. Kompoz. Mater., 34, No. 1, 28–37 (1998).

5. N. A. Abrosimov and A. V. Elesin, “Numerical analysis of the effect of reinforcement structure on the dynamic behavior of cylindrical composite shells under explosive loading,” Probl. Prochn. Plastichn., Issue 74, 78–83 (2012).

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