1. RD 153-34.1-17.424-2001. Methodic Guidelines for Investigation of Causes of Damage to Parts of Steam Turbine Rotors of Power Plants [in Russian], JSC VTI, Moscow (2002).
2. N. N. Grishin, A. N. Gubskii, S. A. Palkov, and I. A. Palkov, “Modeling the effect of creep phenomena on the stress-strain state of high-stress elements of steam turbines,” Vestn. NTU “KhPI”, Ser. Energy and Thermal Engineering Processes and Equipment, No. 12, 98–103 (2014).
3. R. P. Pridorozhnyi, A. V. Sheremetiev, A. P. Zinkovskii, et al., “Estimation of the stress state of turbine rotor blades interlocks taking into account possible dimension deviations”, Aviats.-Kosm. Tekhn. Tekhnol., No. 8, 81–85 (2007).
4. R. P. Pridorozhnyi, A. V. Sheremetiev, and A. P. Zinkovskii, “The effect of material creep on the shroud tie characteristics of highly twisted turbine blades,” Aviats.-Kosm. Tekhn. Tekhnol., No. 7, 62–67 (2016).
5. V. P. Golub, Y. V. Pavlyuk, and V. S. Reznik, “Analysis of creep strains and stress relaxation in thin-walled tubular members made of linear viscoelastic materials. 1. Superposition of shear and volume creep”, Int. Appl. Mech., 56, 156–169 (2020), https://doi.org/10.1007/s10778-020-01011-z.