1. Moiseev, S.A., Iron-chromium-nickel superalloy EP718 (VZh105), Mashinostroenie. Entsyklopedia v soroka tomakh (Mechanical Engineering: Encyclopaedia in Fourty Volumes), vol. 2-3: Tsvetnye metally i splavy. Kompozitsionnye metallicheskie materialy (Nonferrous Metals and Alloys: Composite Metallic Materials), Fridlyander, I.N., Dolbenko, E.T., Kablov, E.N., Senatorova, O.G., and Shalin, R.E., Eds., Moscow: Mashinostroenie, 2001, pp. 585–586.
2. Website of AO Metallurgical Plant Electrostal. http://elsteel.ru/. Cited on July 9, 2019.
3. Bakradze, M.M., Ovsepyan, S.V., Shugaev, S.A., and Letnikov, M.N., The influence of quenching on structure and properties nickel-based superalloy EK151-ID forgings, Tr. VIAM, 2019, no. 9, p. 1. http://viam-works.ru/en/articles?art_id=244. Cited July 11, 2019.
4. Gabb, T.P., Telesman, J., Kantzos, P.T., and O’Connor, K., Characterization of the temperature capabilities of advanced disk alloy ME3, NASA/TM-2002-211796, NASA, 2002. https://ntrs.nasa.gov/api/citations/20020081280/downloads/20020081280.pdf.
5. Sharpe, H.J. and Saxena, A., Effect of microstructure on high-temperature mechanical behavior of nickel-base superalloys for turbine disc applications, Adv. Mater. Res., 2011, vol. 278, pp. 259–264.
https://doi.org/10.4028/www.scientific.net/amr.278.259