World Journal of Mechanics

Volume 3, Issue 3 (June 2013)

ISSN Print: 2160-049X   ISSN Online: 2160-0503

Google-based Impact Factor: 0.91  Citations  

Estimation of Fatigue Life of Laser Welded AISI304 Stainless Steel T-Joint Based on Experiments and Recommendations in Design Codes

HTML  Download Download as PDF (Size: 1235KB)  PP. 178-183  
DOI: 10.4236/wjm.2013.33017    6,199 Downloads   9,513 Views  Citations

ABSTRACT

In this paper the fatigue behavior of laser welded T-joints of stainless steel AISI304 is investigated experimentally. In the fatigue experiments 36 specimens with a sheet thickness of 1 mm are exposed to one-dimensional cyclic loading. Three different types of specimens are adopted. Three groups of specimens are used, two of these are non-welded and the third is welded with a transverse welding (T-Joint). The 13 laser welded specimens are cut out with a milling cutter. The non-welded specimens are divided in 13 specimens cut out with a milling cutter and 10 specimens cut out by a plasma cutter. The non-welded specimens are used to study the influence of heat and surface effects on the fatigue life. The fatigue life from the experiments is compared to fatigue life calculated from the guidelines in the standards DNV-RP-C203 and EUROCODE 3 EN-1993-1-9. Insignificant differences in fatigue life of the welded and non-welded specimens are observed in the experiments and the largest difference is found in the High Cycle Fatigue (HCF) area. The specimens show a lower fatigue life compared to DNV-RP-C203 and EUROCODE 3 EN-1993-1-9 when the specimens are exposed to less than 4.0 1E06 cycles. Therefore, we conclude that the fatigue life assessment according to the mentioned standards is not satisfactory and reliable.

Share and Cite:

S. Lambertsen, L. Damkilde, A. Kristensen and R. Pedersen, "Estimation of Fatigue Life of Laser Welded AISI304 Stainless Steel T-Joint Based on Experiments and Recommendations in Design Codes," World Journal of Mechanics, Vol. 3 No. 3, 2013, pp. 178-183. doi: 10.4236/wjm.2013.33017.

Cited by

[1] Experimental Research on Manson–Coffin Curves for the Frame Material of an Unconventional Vehicle
Materials, 2022
[2] Fatigue analysis of TI6AL4V/INCONEL 625 dissimilar welded joints
2021
[3] Investigation of the Fatigue Behaviour of Metallic Components Used in Plate Heat Exchangers Under Variable Dynamic Loads
2020
[4] Influence of laser weld shape on mechanical and fatigue behaviour of single lap laser welded joints
2020
[5] Numerical modeling of residual stresses and fatigue damage assessment of ultrasonic impact treated 304L stainless steel welded joints
2019
[6] Static, Dynamic, and Fatigue Analysis of the Mechanical System of Ultrasonic Scanner for Inservice Inspection of Research Reactors
Journal of Physics: Conference Series, 2018
[7] Adoptability Analysis of Water Plasma ARC Welding For Mild Steel Pieces
International Journal of Engineering Computational Research and Technology, 2018
[8] Hardness and Microstructural Investigation of Laser Welded SS400 Steel Performed By CO2 Laser Cutting Machine
International Journal of Mechanical & Mechatronics Engineering, 2015

Copyright © 2025 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.