Development of an automated quality assurance approach for welded joints
Autor(en): |
Christian Dänekas
(Institute for Steel Construction Leibniz University Hannover, ForWind Hannover Germany)
Peter Schaumann (Institute for Steel Construction Leibniz University Hannover, ForWind Hannover Germany) Elyas Ghafoori (Institute for Steel Construction Leibniz University Hannover, ForWind Hannover Germany) Steffen Heikebrügge (Institute of Production Engineering and Machine Tools Leibniz University Hannover Garbsen Germany) Klaas Maximilian Heide (Institute of Production Engineering and Machine Tools Leibniz University Hannover Garbsen Germany) Bernd Breidenstein (Institute of Production Engineering and Machine Tools Leibniz University Hannover Garbsen Germany) |
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Medium: | Fachartikel |
Sprache(n): | Englisch |
Veröffentlicht in: | ce/papers, September 2023, n. 3-4, v. 6 |
Seite(n): | 2510-2515 |
DOI: | 10.1002/cepa.2439 |
Abstrakt: |
A more economical and resource‐saving construction of offshore wind energy converters is necessary in order to achieve climate policy objectives. Automated quality assurance of welded joints offers a great potential to enable less conservative manufacturing of the support structures. The main objective of this study is to find a correlation between the parameters that describe the weld geometry and the fatigue life. Butt welded specimens were scanned with a laser line sensor. The weld seam parameters including notch radius and flank angle were evaluated and the stress concentration factors in the notch were determined considering the microstructural support effect. A series of constant amplitude fatigue tests was conducted in order to evaluate S‐N‐curves according to nominal stress approach and notch stress approach. The fatigue results show a good correlation between notch stresses and fatigue life, demonstrating the great potential of the quality assurance approach for evaluating the weld seam geometries. |
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10767367 - Veröffentlicht am:
17.04.2024 - Geändert am:
17.04.2024