A Study of the Deformation of a Low-Density Aluminum–Lithium Alloy under Impact Compression and Localized Shear

Author:

Kuz’min V. A.,Galiev F. F.,Pushkov V. A.,Sherstobitov E. S.,Koshatova E. V.,Gerasimov S. I.,Mishustin A. T.

Publisher

Pleiades Publishing Ltd

Subject

Materials Chemistry,Condensed Matter Physics

Reference18 articles.

1. G. R. Johnson and W. H. Cook, “A constitutive model and data for metals subjected to large strains, high strain rates and high temperatures,” Proceedings of the Seventh International Symposium on Ballistic (Hague, 1983), pp. 541–547.

2. G. R. Johnson and W. H. Cook, “Fracture characteristics of three metals subjected to various strain rates, temperatures and pressures,” Eng. Fracture Mech. 21 (1), 31–48 (1985).

3. V. A. Kuz’kin and D. S. Mikhalyuk, “Application of numerical simulation for identification of Johnson-Cook material model parameters for aluminum under high-speed loading,” Vychisl. Mekh. Sploshnykh Sred 3 (1), 32–43 (2010).

4. A. M. Bragov, L. A. Igumnov, V. B. Kaidalov, A. Yu. Konstantinov, D. A. Lapshin, A. K. Lomunov, and F. M. Mitenkov, “Experimental study and mathematical modeling of the behavior OF ST.3, 20KH13, AND 08KH18N10T steels in wide ranges of strain rates and temperatures,” J. Appl. Mech. Tech. Phys. 56 (6), 977–983 (2015).

5. D. A. Lapshin, Candidate’s Dissertation in Engineering (Nizhnii Novgorod, 2015) [in Russian].

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