PSI - Issue 65
Kuskov K.V. et al. / Procedia Structural Integrity 65 (2024) 133–138 Kuskov K.V./ Structural Integrity Procedia 00 (2024) 000–000
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Acknowledgements
The authors thank the national project "Science and Universities" from the Ministry of Science and Higher Education of the Russian Federation (FEWN-2024-0005) for this study support.
Reference
Agamirov L. V., Vestyak V. A. Statistical evaluation for fatigue resistance of parts based on the theory for similarity of fatigue failure. Izvestiya Rossijskoj Akademii Nauk. Mekhanika tverdogo tela, 2020, No. 3, pp. 104-113. DOI: 10.31857/S0572329920030022. (In Russian) Alexandrov I.M., Milyaev K.E., Semenov S.V. Analysis for the possibility of using low-plastic smoothing to improve the reliability of GTE blades. Vestnik PNIPU. Aerokosmicheskaya tekhnika, 2018, No. 53. pp. 86-96. DOI: 10.15593/2224-9982/2018.53.08. (In Russian) Bychkov N.V. The choice of finishing method to increase the fatigue strength for connecting rods of the internal combustion engine. Mekhaniki XXI veku, 2016, No. 15, pp. 155-158. (In Russian) Fabian Weber, Janina Koziol, Peter Starke. Stresslife: A Short-Time Approach for the Determination of a Trend S-N Curve in and beyond the HCF Regime for the Steels 20MnMoNi5-5 and SAE 1045. Materials 2023, 16, 3914. https://doi.org/10.3390/ma16113914. Jihed Zgal, Hela Gmati, Charles Marot, Frank Morel. An approach based on crystal plasticity for modeling high-cycle fatigue damage of metallic materials. International Journal of Damage Mechanics 0(0) 2016. pp. 1-18. DOI: 10.1177/1056789516650247 Kopylov Yu.R., Sklyarenko A.N., Glazkov A.V. Analysis of work on the quality parameters influence of the hardened surface layer of products with a limited margin of safety on its fatigue resistance.. Uprochnyayushchie tekhnologii i pokrytiya, 2019, V., 15, No. 3 pp. 117-121. (In Russian) Kurguzova O.A., Chernova E.S., Kozinkin D.I. Surface treatment as a way to increase fatigue strength. Nauka i voennaya bezopasnost, 2023, No. 2 (33). pp. 42-46. (In Russian) Kuskov K.V., Syzrantseva K.V. Determination of the geometry influence of the test samples on fatigue resistance. Izvestiya Volgogradskogo gosudarstvennogo tekhnicheskogo universiteta, 2023, No. 6 (277), pp. 65-72. Lyalyakin V. P. Accelerated Locati method for testing machine parts for fatigue resistance. Vestnik mashinostroeniya, 2021, No. 6, pp. 28-29. DOI: 10.36652/0042-4633-2021-6-28-30. (In Russian) Metodicheskie ukazaniya. Nadezhnost' v tekhnike. Metody uskorennyh ispytanij na ustalost' dlya ocenki predelov vynoslivosti materialov, elementov mashin i konstrukcij. RD 50-686-89. Data vvedeniya: 01.01.90. Vveden vpervye.. M.: Izdatel'stvo standartov, 1990, 27 p. (In Russian) Taranova E. S., Tyurin S. A. Experimental accelerated assessment of fatigue resistance of high-strength cast iron with spherical graphite. Mekhanika. Nauchnye issledovaniya i uchebno-metodicheskie razrabotki, 2012, No. 6, pp. 139-148. (In Russian) Terentyev V. F. The mechanism of fatigue crack nucleation in high-strength steels under gigacycle fatigue // Mechanical Fatigue of Metals: Proceeding of the 13-th International Colloquium (MFM), Tern., 25-28 September, 2006, P. 135-140. Trofimov O.F. Prediction of fatigue damage to structural materials under stochastic loading conditions Mashinostroenie i inzhenernoe obrazovanie, 2012, No.3, pp. 17-23. (In Russian) Volkov A. N., Sazonov M. B., Chigrinev I. A.. Investigation of the PPD methods influence on the structure of the surface layer and fatigue resistance. Vestnik Samarskogo gosudarstvennogo aerokosmicheskogo universiteta, 2012,No.3(34),. pp. 153-156. (In Russian) Zyuzin A.A., Konstantinova I.S., Kazmin B.N., Yurov M.D. The problem of standardization for the inclined type of the surfaces micro-roughness direction.. Vestnik mashinostroeniya, 2015, No. 7, pp. 51-53. (In Russian)
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