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Capacity of Fractographic Analysis for Load-Time History Reconstruction and Fatigue Crack Growth Rate Estimation for the 2024-T3 Aluminium Alloy

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Kocańda, S. (1990). Metal Fatigue. Part III in Experimental Methods in Mechanics of Solids. Amsterdam-Oxford-New York: Elsevier.Search in Google Scholar

Kocańda, D., Kocańda, S., & Torzewski, J. (2002). Fatigue crack growth rate in 2024-T3 aluminium alloy. In: Proceedings of the 19th Symposium on Fatigue and Fracture Mechanics, April 2002, (195-202). Bydgoszcz: ATR.Search in Google Scholar

Wanhill, R. J. H. (2002). Flight simulation fatigue crack growth guidelines. In: Proceedings of the 8th International Fatigue Congress, 2-7 June 2002, 1(5), 573-584. Stockholm, Sweden.Search in Google Scholar

Spence, S. H., Williams, N. M., Stonham, A. J., Bache, M. R., Ward, A. R., Evans, W. J., Hay, D., Urbani, C., Crawford, B. R., Loader, C., & Clark, G. (2002). Fatigue in the presence of corrosion pitting in an aerospace aluminium alloy. In: Proceedings of the 8th International Fatigue Congress, 2-7 June 2002, 1(5), 701-708. Stockholm, Sweden.Search in Google Scholar

Katoh, Y., Nakayama, H., & Tanaka, T. (2002). Fatigue crack growth behaviour of aluminium alloy under three-step varying load. In: Proceedings of the 8th International Fatigue Congress, 2-7 June 2002, 2(5), 1459-1466. Stockholm, Sweden.Search in Google Scholar

Sunder, R. (2002). An explanation for the residual stress effect in metal fatigue. In: Proceedings of the 8th International Fatigue Congress, 2-7 June 2002, 5(5), 3339-3350. Stockholm, Sweden.Search in Google Scholar

Gangloff, R. P. (2002). Environment sensitive fatigue crack tip process and propagation in aerospace aluminium alloys. In: Proceedings of the 8th International Fatigue Congress, 2-7 June 2002, Vol. 5(5), 3401-3430. Stockholm, Sweden.Search in Google Scholar

Forth, S. C., Keat, W. D., & Fawrow, L. H. (2002). Experimental and computational investigation of three-dimensional mixed-mode fatigue. Fatigue and Fracture of Engineering Materials and Structures, 25(1), 3-15.10.1046/j.1460-2695.2002.00413.xSearch in Google Scholar

Schijve, J. (2002). Fatigue of structures and materials in the 20th century and the state of the art. In: Proceedings of the 14th Bienniel Conference on Fracture -ECF 14, 2002, Vol. III/III, 211-262.Search in Google Scholar

Schijve, J. (2001). Fatigue of structures and materials, Dordrecht, Boston, London: Kluver Academic Publishers.Search in Google Scholar

Zhang, X. P., Wang, C. H., Ye, L., & Mai, W. (2002). In situ investigation of small fatigue crack growth in poly-crystal and single-crystal aluminium alloys. Fatigue and Fracture of Engineering Materials and Structures, 25(2), 141-150.10.1046/j.8756-758x.2001.00484.xSearch in Google Scholar

Kermanidis, A. T., & Pantelakis, S. G. (2001). Fatigue crack growth analysis of 2024-T3 aluminium specimens under aircraft service spectra. Fatigue and Fracture of Engineering Materials and Structures, 24, 699-710.10.1046/j.1460-2695.2001.00435.xSearch in Google Scholar

Ranganathan, N. (2002). Certain aspects of variable amplitude fatigue. In: Proceedings of the 8th International Fatigue Congress, 2-7 June, 2002, 1(5), 613-621. Stockholm, Sweden.Search in Google Scholar

Brockenbrough, J. R., Bucci, R. J., Kulak, M., Zonker, H. R., Bray, G. H., Heinimann, M. B., & Newman, J.C. (2003). Crack growth prediction methods for spectrum loading to support fatigue and durability damage tolerance evaluation. In: Proceedings of the 22nd Symposium of International Committee on Aeronautical Fatigue - Fatigue of Aeronautical Structures as an Engineering Challenge, 5-9 May 2003, Vol. 1, pp. 14. Lucerne, Switzerland.Search in Google Scholar

Goncalves, W., Pramono, A., & Chaves, C. E. (2003). Embraer New Family of Jets-Meeting the Current Fatigue and Damage Tolerance Requirements. In: Proceedings of the 22nd Symposium of International Committee on Aeronautical Fatigue - Fatigue of Aeronautical Structures as an Engineering Challenge, 5-9 May, 2003, Vol 1, pp. 21. Lucerne, Switzerland.Search in Google Scholar

Lazzeri, L., & Ratti, G. (2002). Fatigue crack propagation in thin sheets under typical helicopter spectra. In: Proceedings of the 8th International Fatigue Congress, 2-7 June 2002, 1(5), 585-592. Stockholm, Sweden.Search in Google Scholar

Iyyer, N. S., Kwon, Y. S., & Phan, N. (2003). P-3C crack growth life predictions under spectrum loading. In: Proceedings of the 22nd Symposium of International Committee on Aeronautical Fatigue - Fatigue of Aeronautical Structures as an Engineering Challenge, 5-9 May 2003, Vol. 2, pp. 18. Lucerne, Switzerland.Search in Google Scholar

Skorupa, M. (1996). Empirical trends and prediction models for fatigue crack growth under variable amplitude loading. Petten, Netherlands: Energy Research Foundation. (ECN-R-96-007)Search in Google Scholar

Ivanova, V., & Shaniavsky, A. (1998). Quantitative fractography. Metallurgy Press.Search in Google Scholar

Kocanda, D., Kocanda, S., & Torzewski, J. (2004). Reconstruction of fatigue crack growth rate for 2024-T3 aluminium alloy sheet on the basis of fractographic analysis. The Archive of Mechanical Engineering, 51(3), 361-376.Search in Google Scholar

Hertzberg, R. (1983). Deformation and fracture mechanics of engineering materials, John Wiley & Sons Inc., 2nd revised edition.Search in Google Scholar

Karasiewicz, T., Bogdanowicz, Z., & Polanski, J. (2007). The influence of amplitude and load rate on the amount of energy dissipation for aluminium alloy subjected to cyclic torsion. Bulletin of Military University of Technology WAT, 56(4). Warsaw, Poland.Search in Google Scholar

Szymczyk, E., Jachimowicz, J., & Bogdanowicz, Z. (2007). Investigations of fatigue crack initiation in rivet-joints. Transactions of the Kielce University of Technology. Mechanics, 4. 125-126. (in Polish). Warsaw, Poland.Search in Google Scholar

Bogdanowicz, Z. (2008). Elaboration of the method of aeronautical skin joints lifetime determination taking into account materials and technological features. Sc. Project, (in Polish). Warsaw, Poland: Military University of Technology.Search in Google Scholar

ISSN:
2081-7738
Langue:
Anglais
Périodicité:
Volume Open
Sujets de la revue:
Engineering, Introductions and Overviews, other