Author:
Skripnyak Vladimir A.,Skripnyak Natalia V.,Skripnyak Evgeniya G.,Skripnyak Vladimir V.
Reference10 articles.
1. V.A. Skripnyak “Mechanical behavior of nanostructured and ultrafine-grained materials under shock wave loadings. Experimental data and results of computer simulation”, in “Shock Compression of Condensed Matter-2012”, AIP Conference Proceedings 1426, AIP, Melville, NY, 2012, pp. 965–970.
2. Tensile characterization and constitutive modeling of AZ31B magnesium alloy sheet over wide range of strain rates and temperatures
3. B. Raeisinia, C. W. Sinclair, W. J. Poole, and C. N. Tome, Mater. Sci. Eng. 16, 025001 (15pp) (2008).
4. A statistical model for predicting the mechanical properties of nanostructured metals with bimodal grain size distribution
5. V.A. Skripnyak, E.G. Skripnyak, N.V. Skripnyak, I.K. Vaganova, and V.V. Skripnyak “Failure mechanisms of light alloys with a bimodal grain size distribution”, in:”11th. World Congress on Computational Mechanics (WCCM XI)”, Barcelona, Spain, 25-29, July. 2014. IV: 3915–3925 (2014).
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