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Fatigue Variable Loading Under Combined High Temperature and Shot Peening Treatment for AA2024-T4 and AA2024-T361

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[1] Qandil, A., Zaid. A. I. O. “Effect of shot peening and grain refinement on the fatigue life and strength of commercially pure Al and two of its alloys: Al-2024-T3 and Al-7075-T6”, IOP Conf. Series: Materials Science and Engineering 146, 012028, 2016. DOI: 10.1088/1757-899X/146/1/012028Search in Google Scholar

[2] Drátovská, V., Sedláček, R., Padovec, Z., Růžička, P., Kratochvíl, A. “The Mechanical Properties and Fatigue Prediction of a New Generation of Osteosynthesis Devices”, Strojnícky časopis – Journal of Mechanical Engineering 71 (2), pp. 101 – 108, 2021. DOI: 10.2478/scjme-2021-0021Search in Google Scholar

[3] Ait Said, A., Bey, K., Mzad, H. “Mechanical Fatigue Test of Aluminium Composite Panel (ACP) with Aramid Nida-Core Under Cyclic Bending“, Strojnícky časopis – Journal of Mechanical Engineering 70 (2), pp. 1 – 10, 2020. DOI: 10.2478/scjme-2020-0015Search in Google Scholar

[4] Sameer, K. D., Suman, K. N. S, Poddar, P., Sasanka, C. T. “Performance Evaluation of Surface Modified Nano Al2o3 (P) Reinforced AZ91E Composites Under Impact and Fatigue Loading Conditions“, Strojnícky časopis – Journal of Mechanical Engineering 70 (1), pp. 29 – 38, 2020. DOI: 10.2478/scjme-2020-0003Search in Google Scholar

[5] Allawi, H. A., Ksibi, H., Driss, Z., Alalkawi, H. J. M. “Optimization of the Shot Peening Time (SPT) in Terms of Mechanical Properties and Fatigue Life of AA2024-T4”, 3rd International Conference on Electromechanical Engineering & its Applications, Baghdad, Iraq, 19-20 July, 2022.Search in Google Scholar

[6] Harish, B., Shivalingappa, D., Vishnu, P., Sampath, K. “Impact of Ball burnishing process parameters on surface Integrity of an Aluminum 2024 Alloy, IOP Conf. Series: Materials Science and Engineering 376, 012099, 2018. DOI: 10.1088/1757-899X/376/1/012099.Search in Google Scholar

[7] Jordan, E. H. “Elevated Temperature Biaxial Fatigue NASA Contractor Report 175009”, Prepared for the Lewis Research Center Under Contract NAG 3-160, 1985. https://ntrs.nasa.gov/citations/19860002059Search in Google Scholar

[8] Mazlan, S., Yidris, N., Koloor, S. S. R., Petru, M. “Experimental and Numerical Analysis of Fatigue Life of Aluminium Al 2024- T351 at Elevated Temperature”, Metals 10 (12), 1581, 2020. DOI: 10.3390/met10121581Search in Google Scholar

[9] Hales, R. “Multiaxial Creep-Fatigue Rules”, Nuclear Engineering and Design 153, (2–3), pp. 257 – 264, 1996. DOI: 10.1016/0029-5493(95)90017-9Search in Google Scholar

[10] Alakawi H. J. M., Mohammed. Q. K., Al-Nuami, W. S. “The Effect of Shot Peening and Residual Stresses on Cumulative Fatigue Damage”, Engineering and Technology Journal 28 (15), pp. 5055 – 5070, 2010. https://etj.uotechnology.edu.iq/article_33973.htmlSearch in Google Scholar

[11] Zainab, A. B. “Corrosion-fatigue behavior of 1100-H12 Al alloy under different shot peening time”, MSC. Thesis, University of Al-Mustansirya, Iraq, 2014.Search in Google Scholar

[12] Alakawi H. J. M, Fikrat, A. K., Abdulqasim, A. M. A. “Prediction of fatigue-Greep interaction life aluminum alloy AA7349 using electromechanical devices”, Engineering and Technology Journal 33 (3), pp. 535 – 547, 2015. https://etj.uotechnology.edu.iq/article_101922.htmlSearch in Google Scholar

[13] Blasón, S., Correia José, A. F. O. ,De Jesus, Abílio, M .P., Calçada Rui A. B., and Fernández-Canteli, A. “A probabilistic analysis of Miner’s law for different loading conditions”, Structural Engineering and Mechanics 60 (1), pp. 71 – 90, 2016. DOI: 10.12989/sem.2016.60.1.071Search in Google Scholar

[14] Hectors, K.; De Waele, W. “ Cumulative Damage and Life Prediction Models for High-Cycle Fatigue of Metals: A Review”, Metals, 11 (2), 204, 2021. DOI: 10.3390/met11020204Search in Google Scholar

[15] Kafel, A. A. M., Saad A. A., Alakawi H. J. M. “Thermo-mechanical fatigue damage model for life prediction of Naval copper”, Anbar Journal for Engineering Sciences 4(2), pp. 70 – 79, 2011. https://www.iasj.net/iasj/download/4af9dad2412e9949Search in Google Scholar

[16] Arshed, M., Hammouda, M. M. I., “Effect of shot on the fatigue life of 2024 aluminum alloy”, Materials Science, 2007.Search in Google Scholar

[17] Kujawski, D., Ellyin. F. “A cumulative damage theory for fatigue crack ignition and propagation”, International Journal of Fatigue 6 (2), pp. 83 – 87, 1984. DOI: 10.1016/0142-1123(84)90017-3Search in Google Scholar

eISSN:
2450-5471
Lingua:
Inglese
Frequenza di pubblicazione:
2 volte all'anno
Argomenti della rivista:
Engineering, Mechanical Engineering, Fundamentals of Mechanical Engineering, Mechanics