PSI - Issue 79
Karolina Głowacka et al. / Procedia Structural Integrity 79 (2026) 155– 160
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Acknowledgement This paper was funded by the National Science Centre, Poland, under the OPUS call in the Weave programme No 2022/47/I/ST8/00003 This research was funded by the Slovenian Research and Innovation Agency (ARIS), project grant no. N2-0326 (Experimental and numerical analysis of static and fatigue double-side bending of rubber matrix composites) References 1. Deng, X., Hu, H., Qiu, J., & Ye, S. (2020). Fatigue design of rubber mount for automobile powertrain., Proceedings of China SAE Congress 2018: Selected Papers (pp. 369 – 381). Springer. 2. Samad, M. S. A., & Ali, A. (2010). Simulation work of fatigue life prediction of rubber automotive components. IOP Conference Series: Materials Science and Engineering, 11(1), 012009. https://doi.org/10.1088/1757-899X/11/1/012009 3. Torggler, J., Faethe, T., Müller, H., Dutzler, A., Machado Charry, E., Buzzi, C., & Leitner, M. (2024). Fatigue assessment of cord rubber composite air spring bellows based on specimen testing and numerical analysis. Journal of Applied Polymer Science, 141(37), e55949. 4. Qiu, X., Yin, H.; Xing, Q., Research Progress on Fatigue Life of Rubber Materials. Polymers 2022, 14, 4592. https://doi.org/10.3390/polym14214592. 5. Zhou Y, Jiang L, Chen S, Ma J, Betts A, Jerrams S. Determination of reliable fatigue life predictors for magnetorheological elastomers under dynamic equi-biaxial loading. Poly Test 2017;61:177 – 84. https://doi.org/10.1016/j.polymertesting.2017.05.021. 6. Wohler A., 1858, Bericht ¨uber die versuche, welche auf der K¨onigl. Niederschlesisch - M¨arkischen Eisenbahn mit Apparaten zum Messen der Biegung und Verdrehung von Eisenbahn-wagen- Achsen w¨ahrend der Fahrt, angestellt wurden, Zeitschrift f¨ur Bauwesen, 8, 642 -652 7. Paris, P. and Erdogan, F. (1963) A Critical Analysis of Crack Propagation Laws. Journal of Fluids Engineering, 85, 528-534, http://dx.doi.org/10.1115/1.3656900. 8. Chen L., Gu B., Predicting Fatigue Damage in Interphase of Short Fiber Reinforced Rubber Composites Under Transverse Load, Polymer Composites — 2018, pp.1455-1467 9. Valantin C., Lacroix F., Deffarges M.-P., Morcel J., Hocine A., Interfacial Damage on Fatigue-Loaded Textile – Rubber Composites, J. APPL. POLYM. SCI. 2015, no. 41346, DOI: 10.1002/APP.41346, Fatigue Fract Eng Mater Struct. 2021;44:521 – 532. 10. Drozdov, A. D., & Dorfmann, A. (2002). Finite viscoelasticity of filled rubbers: The effects of pre-loading and thermal recovery. Continuum Mechanics and Thermodynamics, 14(4), 337 – 361. https://doi.org/10.1007/s001610100073 11. Le Cam, J.-B., Ruellan, B., Robin, E., Jeanneau, I., Canevet, F., Mauvoisin, G., & Loison, D. (2019). A post mortem analysis of the strain induced crystallization effects on fatigue of elastomers. Materials Science and Engineering: A, 745, 1 – 9. https://doi.org/10.1016/j.msea.2018.12.053 12. Ruellan, B., Le Cam, J.-B., Robin, E., Jeanneau, I., Canevet, F., Mauvoisin, G., & Loison, D. (2019). A post mortem analysis of the strain induced crystallization effects on fatigue of elastomers. Materials Science and Engineering: A, 745, 1 – 9. https://doi.org/10.1016/j.msea.2018.12.053 13 . Głowacka, K., Klemenc, J., Nagode, M., Łagoda, T. (2025). , Fatigue lifetime of rubber composites – State-of-the-art. Polymer Testing, 143, 108713. https://doi.org/10.1016/j.polymertesting.2025.108713 14. P awliczek, R., Głowacka, K., Klemenc, J., Nagode, M., & Łagoda, T. (2025). New possibilities for testing rubber composites: Design of the fatigue bending test. Advances in Science and Technology Research Journal, 19(4), 42 – 49. 15. Manson SS. Fatigue: a complex subject – some simple approximation. Exp Mech 1965;5:193 – 226. 16. Coffin LF. A study of the effect of cyclic thermal stresses on a ductile metal. Trans ASME 1954;76:931 – 50. 17. Basquin OH. The exponential law of endurance tests. Am Soc Test Mater Proc 1910;10:625 – 30 18. ASTM E606 (1999), Standard practice for strain-controlled fatigue testing. In: Annual book of ASTM, vol 03.01, Philadelphia, 1999. p. 543 – 557
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