Determining of the Fatigue Crack Growth Rate of HSLA Steel at Room Temperature

Author:

Bulatović Srđan1,Aleksića Vujadin1ORCID,Milović Ljubica2ORCID,Zečević Bojana3ORCID

Affiliation:

1. Institute for Materials Testing (IMS), Bulevar vojvode Mišića 43, Belgrade, Serbia

2. University of Belgrade, Faculty of Technology and Metallurgy, Karnegijeva 4, Belgrade, Serbia

3. University of Belgrade, Innovation Centre of Faculty of Technology and Metallurgy, Karnegijeva 4, Belgrade, Serbia

Abstract

Welded joint is a critical region of a welded structure and fracture mechanics analysis is inevitable in the structural integrity assessment of all welded structures. This paper shows the determining of parameters of the fatigue crack for constituents of welded joints produced of high strength low alloyed steel. The applied methodology refers to the Paris relation where the link was established between the variable load quantity or the corresponding stress intensity factor range and crack growth per cycle. Results have shown that the position of the notch and crack initiation affect the values of the stress intensity range of fatigue threshold ΔKth and parameters in the Paris’ equation. This is mostly expressed when determining growth parameters of the fatigue crack in heat affected zone of HSLA steel, where different changes of growth speed of the fatigue crack clearly express differences in structure of the crack pass.

Funder

Ministarstvo Prosvete, Nauke i Tehnološkog Razvoja

Publisher

Faculty of Technical Sciences

Subject

General Medicine

Reference11 articles.

1. Milović, Lj., Vuherer, T., Zrilić, M., Momčilović, D. (2011). Structural integrity assessment of welded pressure vessel produced of HSLA steel. Journal of iron and steel research international, 18 (2), 888-892.

2. Manjgo, M., Sedmak, A., Grujic, B. (2008). Fracture and fatigue behaviour of Niomol 490K welded joint. Structural integrity and life, 8 (3), 149- 158.

3. Kastelec-Macura S. (2011). Istraživanje uticaja parametara zavarivanja na strukturu i karakteristike metala šava legure AIMg4.5Mn, Phd dissertation, University of Belgrade Faculty of Mechanical Engineering.

4. Čamagić, I., Burzić, Z., Cvetković, S. (2008). The usage of the fracture mechanics in determining the growth parameters of the fatigue crack for particular areas of a welded joint. Welding and welded structures, 3, 97-103.

5. Paris, P., Gomez, M., Anderson, W. (1961). A Rational Analytic Theory of Fatigue. The Trends in Engineering, 13, 9-14.

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