PSI - Issue 36
Nataliya Yadzhak et al. / Procedia Structural Integrity 36 (2022) 401–407 Nataliya Yadzhak, Oleksandr Andreykiv, Yuri Lapusta / Structural Integrity Procedia 00 (2021) 000 – 000
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Acknowledgements This research was partially supported by the French Government Scholarship Program and the I-SITE CAP 20-25 Program. References Andreikiv, O. E., Sas, N. B, 2006. Fracture mechanics of metallic plates under the conditions of high-temperature creep. Materials Science 42 (2), 210 – 219. Andreikiv, O. E., Shtayura, N. S., 2019. Computational models of fatigue cracks growth in metallic materials under the action of force and physicochemical factors. Materials Science 54 (4), 465-476. Andreykiv O., Shtayura, N., Yarema R., 2017. Energy-based approach to evaluation of short fatigue crack growth rate in plates. Strength of Materials 49 (6), 778-787. Nie, D., Chen, X., Wu, Q., 2020. Mixed-mode fracture behaviours of AISI 1045 and AISI 5140 steels in compressor crankshafts – Part II: Mode II-III. Engineering Failure Analysis 110, 104407. Miller, K. J., 1987. The behaviour of short fatigue cracks and their initiation. Part II A general summary. Fatigue & Fracture of Engineering Materials & Structures 10(2), 93-113. Murakami, Y., Takahashi, K., Kusumoto, R., 2003. Threshold and growth mechanism of fatigue cracks under mode II and III loadings. Fatigue & Fracture of Engineering Materials & Structures 26 (6), 523 – 531. Lenkovs’kyi, T. M., 2017. Fatigue crack-growth resistance of thermally hardened 65G steel under transverse shear. Materials Science 53(2), 200 – 206. Rudavs’kyi, D. V., 2015. Evaluation of the residual life of a three -dimensional solid body weakened by a plane fatigue crack under cyclic loading. Materials Science 51 (3), 348-357. Shata, M., Terletska, Z. O., 1999. Enerhetychnyi pidkhid v mekhanitsi vtomnoho poshyrennia makrotrishchyn [An energy approach in mechanics of fatigue macrocracks propagation], in “ Mekhanika Ruinuvannia Materialiv ta Mitsnist Konstruktsiy ” [ Fracture mechanics of materials and strength of constructions ] 2. In: Panasyuk, V. V. (Ed.). Kameniar, Lviv, pp. 141 – 148. Vojtek, T., Pokluda, J. Horníková , J., Šandera , P., Slámečka , K., 2014. Description of Fatigue Crack Growth under Modes II, III and II+III in Terms of J-integral. Procedia Materials Science 3, 835-840. Vojtek, T., Pokluda, J. Šandera , P., Horníková , J., Hohenwarter, A., Pippand, R., 2015. Analysis of fatigue crack propagation under mixed mode II+III in ARMCO iron. International Journal of Fatigue 76, 47-52. Zhao, Y., 1987. Griffith's criterion for mixed mode crack propagation. Engineering Fracture Mechanics 26(5), 683 - 689.
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