Spatter formation in laser beam welding using laser beam oscillation
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  • 作者:Florian Hugger (1)
    Konstantin Hofmann (1)
    Stefanie Kohl (2)
    Michael Dobler (2)
    Michael Schmidt (2)

    1. Bayerisches Laserzentrum GmbH
    ; Erlangen ; Germany
    2. Photonic Technologies
    ; University of Erlangen-Nuremberg ; SAOT ; Erlangen ; Germany
  • 关键词:Laser beams ; Laser welding ; Spatter ; Simulating ; Imaging
  • 刊名:Welding in the World
  • 出版年:2015
  • 出版时间:March 2015
  • 年:2015
  • 卷:59
  • 期:2
  • 页码:165-172
  • 全文大小:2,638 KB
  • 参考文献:1. Schmitt F (2012) Laserstrahl-Mikroschwei脽en mit Strahlquellen hoher Brillanz und 枚rtlicher Leistungsmodulation. Dissertation RWTH Aachen, Shaker Verlag GmbH 鈥?Laser beam micro welding using high brilliant laser sources and local power modulation
    2. Schweier M, Hatwig J, Zaeh MF, Reppich J (2011) Single mode fiber beam welding with superposed beam oszillations. In Proceedings of the ICALEO, pp 536鈥?46
    3. Mahrle A, Beyer E (2007) Control of the energy deposition during laser beam welding by oscillation techniques. In: Proceedings of Lasers in Manufacturing, pp. 97鈥?04
    4. Kraetsch M, Standfuss J, Klotzbach A, Kaspar J, Brenner B, Beyer E (2011) Laser beam welding with high-frequency beam oscillation: welding of dissimilar materials with brilliant fiber lasers. In: Lasers in Manufacturing, pp. 142鈥?49
    5. Meier O (2006) Hochfrequentes Strahlpendeln zur Erh枚hung der Prozessstabilit盲t mit hoher Schmelzbaddynamik. AiF-final report of project 13600聽N, High frequency beam oscillation for increased process robustness with high weld pool dynamics
    6. Schweier M, Heins JF, Haubold MW, Zaeh MF (2013) Spatter formation in laser welding with beam oscillation, Proceedings of Laser in Manufacturing, pp. 20鈥?0
    7. Funk M (1994) Absorption von CO2-Laserstrahlung beim Laserstrahlschwei脽en von Grobblech. Dissertation RWTH Aachen, Shaker Verlag GmbH, Absorption of CO2 laser radiation at laser beam welding of thick plates
    8. Fabbro R, Silami S (2007) Melt pool dynamics during deep penetration cw Nd-Yag laser welding. In: Proceedings of Lasers in Manufacturing, pp. 259鈥?64
    9. Weberpals J.-P (2010) Nutzen und Grenzen guter Fokussierbarkeit beim Laserschwei脽en. Dissertation of IFSW, Stuttgart, Benefits and limits of strong focusability at laser welding
    10. Kaplan A, Powell J (2010) Laser welding: the spatter map. In: Proceedings of ICALEO, pp. 683鈥?90
    11. K盲geler C, Schmidt M (2010) Frequency Analysis of Frequency-based analysis of weld pool dynamics and keyhole oscillations at laser beam welding of galvanized steel sheets, Proceedings of the LANE, Part 2, pp. 447鈥?53
    12. Cai H, Xiao R (2011) Comparison of spatter characteristics in fiber and CO2 laser beam welding of aluminium alloy. In: Proceeding of ICALEO, 150鈥?58
    13. Erhardt KM, Heine A, Pommersberger H (1993) Laser in der Materialbearbeitung. Vogel Buchverlag, Laser in material processing
    14. Geiger M, Leitz K-H, Koch H, Otto A (2009) A 3D transient model of keyhole and melt pool dynamics in laser beam welding applied to the joining of zinc coated sheets. In: Production Engineering - Research and Development 3, 127鈥?36
    15. Otto A, Schmidt M (2010) Towards a universal numerical simulation model for laser material processing, Proceedings of the LANE, 35鈥?6
    16. Brandes EA (1992) Smithells metals reference book, 6th edn. Butter-worth Publishers, Stoneham
    17. Schmidt P (1894) Zerst盲uben von Fl眉ssigkeiten, 脺bersichtsvortrag Universit盲t Essen, 1984. Disintegration of liquids, survey lecture, University of Essen
    18. Kolmogorov et al (2001) Computing visual correspondence with occlusions using graph cuts, Proceedings of the International Conference On Computer Vision, Vancouver
  • 刊物主题:Metallic Materials; Continuum Mechanics and Mechanics of Materials; Theoretical and Applied Mechanics;
  • 出版者:Springer Berlin Heidelberg
  • ISSN:1878-6669
文摘
This paper presents an approach towards a better understanding of spatter formation in laser beam welding. Hereunto, experimental investigations and numerical simulation are carried out. For the study, various steels and aluminium alloys were selected to investigate the influences of alloying elements upon spatter formation. The welding was performed by applying a laser beam oscillation technique in which weld seam is generated by a spiral movement of the laser beam, in order to check the influence of weld pool movement according to spatter formation. This strategy was also transferred to the numerical simulation to get a detailed insight into the processes taking place in the keyhole when spatters form. Furthermore, a new detection method is presented which allows a three-dimensional tracking of spatters by using a pair of synchronised stereo cameras.

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