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The fatigue fracture of structural details subjected to cyclic loads mostly occurs at a critical cross section with stress concentration. The welded joint is particularly dangerous location because of sinergetic harmful effects of stress concentration, tensile residual stresses, deffects, microstructural heterogeneity. Because of these reasons many methods for improving the fatigue resistance of welded joints are developed. Significant increase in fatigue strength and fatigue life was proved and could be attributed to improving weld toe profile, the material microstructure, removing deffects at the weld toe and modifying the original residual stress field. One of the most useful methods to improve fatigue behaviour of welded joints is TIG dressing. The magnitude of the improvement in fatigue performance depends on base material strength, type of welded joint and type of loading. Improvements of the fatigue behaviour of the welded joints in low-carbon structural steel treated by TIG dressing is considered in this paper.
Wydawca
Czasopismo
Rocznik
Tom
Strony
113--117
Opis fizyczny
Bibliogr. 7 poz., rys., tabl.
Twórcy
autor
- Department of Mechanical Engineering, University of Montenegro, Cetinjski put bb, 81000 Podgorica, Montenegro, zoranp@cg.ac.yu
Bibliografia
- [1] H.O. Fuchs, R.I. Stephens, Metal fatigue in engineering, John Wiley & Sons, New York, 1980.
- [2] N.A. Klikov, Rascet harakteristik soprotivlenija ustalosti svarnih soedinenij, Masinostroenie, Moskva, 1984 (in Russian).
- [3] L. Toth, Procjena osjetljivosti na rast prslina u zavarenim konstrukcijama, MS-Zavarivanje 96-Zavarivanje u energetici, Beograd, 1996, 192-195 (in Serbian).
- [4] L. Huo, D. Wang, Y. Zhang, Investigation of the fatigue behaviour of the welded joint treated by TIG dressing and ultrasonic peening under variable-amplitude load, International Journal of Fatigue 27/11 (2005) 95-101.
- [5] E.S. Statnikov, V.O. Muktepavel, V.I. Trufyakov, P.P. Mikheev, A.Z. Kuzmenko, A. Blomqvist, Efficiency evaluation of ultrasonic impact treatment (UIT) of welded joints in Weldox 420 steel in accordance with IIW program, IIW Doc. XIII-1817-00,2000, 1-29.
- [6] J. Rudolph, C. Schmitt, E. Weis, Fatigue lifetime assessment procedures for welded pressure vessel components, International Journal of Pressure Vessels and Piping 79/2 (2002) 103-112.
- [7] J.S. Rustagi, Introduction to statistical methods, Rowman and Allanheld Publishers, New Jersey, 1984.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BOS4-0021-0018