PSI - Issue 48

Gašper Fašun et al. / Procedia Structural Integrity 48 (2023) 19–26

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Fašun et al/ Structural Integrity Procedia 00 (2023) 000–000

[2] L. Banks-Sills and R. Eliasi, “Fatigue life analysis of a cannon barrel,” Engineering Failure Analysis, vol. 6, no. 6, pp. 371–385, Dec. 1999, doi: 10.1016/S1350-6307(98)00054-5. [3] J. J. Ritter, B. E. Homan, and W. Thalman, “Dynamic Pressure Testing of a 155-mm Howitzer Ballistic Window Using a Closed Bomb Vessel,” Aug. 2010, doi: 10.21236/ADA526322. [4] D. Carlucci and J. Vega, “Empirical relationship for muzzle exit pressure in a 155 mm gun tube,” WIT Transactions on Modelling and Simulation, vol. 45, pp. 225–229, 2007, doi: 10.2495/CBAL070211. [5] W. You, T. Ma, Y. Ding, and M. Cui, “Simulated artillery chamber pressure generator for special dynamic evaluation,” Automatika, vol. 57, no. 2, pp. 525–531, Jan. 2016, doi: 10.7305/automatika.2016.10.1105. [6] Ravne Systems d.o.o., “Technical requirements for production, control, testing and acceptance of gun barrel assembly,” 1999. [7] O. Güngör, “An approach for optimization of the wall thickness (weight) of a thick-walled cylinder under axially non-uniform internal service pressure distribution,” Defence Technology, vol. 13, no. 2, pp. 150–157, Apr. 2017, doi: 10.1016/J.DT.2017.04.003. [8] Metal Ravne, “SIQUAL 6959 Steel (Mat.No. 1.6959, DIN 35NiCrMoV12-5).” https://steelselector.sij.si/steels/KATO1.html (accessed Mar. 17, 2022). [9] International Organization for Standardization, ISO 6892-1:2019, Metallic materials — Tensile testing — Part 1: Method of test at room temperature. 2019. [10] ASTM International, ASTM E399-20a: Standard Test Method for Linear-Elastic Plane-Strain Fracture Toughness of Metallic Materials. 2020. [11] ASTM International, ASTM E647-11: Standard Test Method for Measurement of Fatigue Crack Growth Rates. 2011. [12] C.A. Molina, M.D. Chapetti, “Estimation of high cycle fatigue behaviour using a threshold curve concept,” Int J Fatigue 125 (2019): 23–34. [13] M.D. Chapetti, “A simple model to predict the very high cycle fatigue resistance of steels,” International Journal of Fatigue, vol. 33, no. 7, pp. 833–841, Jul. 2011, doi: 10.1016/J.IJFATIGUE.2010.12.010. [14] G. la Rosa and A. Risitano, “Thermographic methodology for rapid determination of the fatigue limit of materials and mechanical components,” International Journal of Fatigue, vol. 22, no. 1, pp. 65–73, 2000, doi: 10.1016/S0142-1123(99)00088-2. [15] M. D. Chapetti, “Fatigue propagation threshold of short cracks under constant amplitude loading,” International Journal of Fatigue, vol. 25 (2003), n. 12, pp. 1319–1326. [16] M. D. Chapetti, “Fracture mechanics for fatigue design of metallic components and small defect assessment,” International Journal of Fatigue 154 (2022) 106550. [17] N. Gubeljak, Mehanika loma: univerzitetni ucbenik. Fakulteta za strojništvo, 2009.

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