Numerical Analysis of Stress Intensity Factor in Specimens with Different Fillet Geometry Subjected to Bending
Author:
Affiliation:
1. Faculty of Mechanical Engineering, Department of Mechanics and Machine Design , Opole University of Technology , ul. Mikołajczyka 5, 45-271 Opole , Poland
Abstract
Publisher
Walter de Gruyter GmbH
Subject
Mechanical Engineering,Control and Systems Engineering
Link
https://www.sciendo.com/pdf/10.2478/ama-2018-0006
Reference20 articles.
1. 1. Balitskii O.I., Kostyuk I.F. (2009), Strength of welded joints of Cr-Mn steels with elevated content of nitrogen in hydrogen-containing media, Materials Science, 45, 97-107.10.1007/s11003-009-9166-7
2. 2. Benachour M., Benguediab M., Hadjoui A., Hadjoui F., Benachour N. (2008), Fatigue crack growth of a double fillet weld, Computational Materials Science, 44, 489–495.10.1016/j.commatsci.2008.04.015
3. 3. Carpinteri A., Brighenti R., Huth H.J., Vantadori S. (2005) Fatigue growth of a surface crack in a welded T-joint, Int. J. Fatigue, 27, 59–69.10.1016/j.ijfatigue.2004.05.007
4. 4. Duchaczek A., Mańko Z. (2012), Assessment of direct method of calculating stress intensity factor, Journal of Science of the gen. Tadeusz Kosciuszko Military Academy of Land Forces, 3 (165), 336-346 (in Polish).10.5604/01.3001.0002.3510
5. 5. Faszynka S., Lewandowski J., Rozumek D. (2016), Numerical analysis of stress and strain in specimens with rectangular cross-section subjected to torsion and bending with torsion, Acta Mechanica et Automatica, 10, 5-11.10.1515/ama-2016-0001
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