1. Ivanova, V.S. and Terent’ev, V.F., Priroda ustalosti metallov (The Nature of Metal Fatigue), Moscow: Metallurgiya, 1975.
2. Kabaldin, Yu.G., Shatagin, D.A., Anosov, M.S., et al., Otsenka i diagnostika strukturnoi ustoichivosti metallov pri nizkikh temperaturakh na osnove podkhodov nelineinoi dinamiki i iskusstvennogo intellekta: Monografiya (Assessment and Diagnostics of the Structural Stability of Metals at Low Temperatures Based on the Approaches of Nonlinear Dynamics and Artificial Intelligence: Monograph), Kabaldin, Yu.G., Ed., Nizhny Novgorod: Nizhegorodsk. Gos. Tekh. Univ. im. A.A. Alekseeva, 2017.
3. Koneva, N.A., Teplyakova, L.A., Sosnin, O.V., et al., Transformations of dislocation substructures under fatigue loading, Russ. Phys. J., 2002, vol. 45, pp. 303–318. https://doi.org/10.1023/A:1020348801518
4. Panin, V.E., Likhachev, V.A., and Grinyaev, Yu.A., Strukturnye urovni deformatsii tverdykh tel (Structural Levels of Deformation in Solids), Novosibirsk: Nauka, 1985.
5. Trefilov, V.I., Mil’man, Yu.V., and Firstov, S.A., Fizicheskie osnovy prochnosti tugoplavkikh metallov (Physical Basis of Strength of Refractory Metals), Kiev: Naukova Dumka, 1975.