1. O.D. Neikov, Yu.V. Milman, D.B. Miracle, D.V. Lotsko, A.I. Sirko, A.V. Sameljuk, and N.A. Yefimov, “Properties of rapidly solidified powder aluminum alloys for elevated temperatures produced by water atomization,” in: V. Arnhold, C.-L. Chu, W. Jandeska Jr., and H. Sanderow (eds.), Advances in Powder Metallurgy and Particulate Materials, Metal Powder Industries Federation, Princeton, New Jersey (2002), Vol. 7, pp. 14–27.
2. O.D. Neikov, G.I. Vasilieva, A. V. Sameljuk, and A. V. Krajnikov, “Water atomized aluminum alloy powders,” Mater. Sci. Eng., A383, 7–13 (2004).
3. K. A. Gogaev, V. S. Voropaev, D. P. Verbylo, N. I. Danilenko, and A. Yu. Koval, “Effect of the shaping modes on the structure and properties of water-atomized AMg5 alloy powders,” in: Electron Microscopy and Strength of Materials [in Russian], Collected Papers, Inst. Probl. Materialoved. NAN Ukrainy, Kyiv (2014), Issue 20, pp. 153–159.
4. K. A. Gogaev, V. S. Voropaev, Yu. N. Podrezov, D. G. Verbylo, and O. S. Koryak, “Effect of deformation conditions on the properties of powder material AMg5,” Powder Metall. Met. Ceram., 54, No. 5–6, 274–280 (2015).
5. K. A. Gogaev, V. S. Voropaev, A. V. Vdovychenko, Yu. N. Podrezov, N. F. Gadzyra, and Ya. I. Yevich, “The influence of deformation modes on the structure and properties of Al–Mg–Х powder composites. I. The influence of rolling conditions on the mechanical properties of aluminum powder ribbons strengthened with SiC nanoparticles,” Powder Metall. Met. Ceram., 57, No. 5–6, 257–264 (2018).