Electric mobility is undergoing a very rapid maturation process [A. Kampker, K. Kreisköther, P. Treichel, T. Möller, Y. Boelsen, and D. Neb, “Electromobility trends and challenges of future mass production,” in Handbook Industry 4.0, edited by W. Frenz (Springer, Berlin, 2022), D. Ziegler and N. Abdelkafi, “Business models for electric vehicles: Literature review and key insights,” J. Cleaner Prod. 330, 129803 (2022)]. While conventional vehicle design disciplines such as car body design are established, electromobility-specific disciplines are in the technological orientation and ramp-up phase. In particular, the demand for components like batteries, e-motors, and power electronics is growing continuously [A. Kampker, K. Kreisköther, P. Treichel, T. Möller, Y. Boelsen, and D. Neb, “Electromobility trends and challenges of future mass production,” in Handbook Industry 4.0, edited by W. Frenz (Springer, Berlin, 2022), D. Ziegler and N. Abdelkafi, “Business models for electric vehicles: Literature review and key insights,” J. Cleaner Prod. 330, 129803 (2022)]. One of the major materials chosen for these parts is aluminum alloys [C. Prieto, E. Vaamonde, D. Diego-Vallejo, J. Jimenez, B. Urbach, Y. Vidne, and E. Shekel, “Dynamic laser beam shaping for laser aluminium welding in e-mobility applications,” Procedia CIRP. 94, 596–600 (2020)]. Next to the material-specific challenges and mentioned requirements, the focus is on the gas-tight welding of aluminum alloys for parts like casted power electronics housings and heat exchangers made of sheet metal or extrusion profiles. Gas-tightness is a requirement, on the one hand, to shield electronic components from the influence of the surrounding environment and, on the other hand, to prevent leakage of the water-cooling circuit [C. Prieto, E. Vaamonde, D. Diego-Vallejo, J. Jimenez, B. Urbach, Y. Vidne, and E. Shekel, “Dynamic laser beam shaping for laser aluminium welding in e-mobility applications,” Procedia CIRP. 94, 596–600 (2020), A. Artinov, M. Bachmann, X. Meng, V. Karkhin, and M. Rethmeier, “On the relationship between the bulge effect and the hot cracking formation during deep penetration laser beam welding,” Procedia CIRP 94, 5–10 (2020)]. This paper offers insight into the requirements of these parts and an innovative optics approach with a novel MultiFocus solution. Material-specific challenges (e. g. porosity), especially, for helium-tight welding of aluminum casted housings with forging alloys are characterized. This analysis is conducted using gas-tightness measurements, CT-scans, micrographs, and high-speed recordings in order to elaborate on the fundamental laser-material-process interdependencies and the correlation between the process and resulting quality, in terms of tightness. Furthermore, high-speed synchrotron recordings are conducted at the DESY and based on that, a detailed evaluation of laser and material interaction is conducted. This allows an explanation of the interactions for the prevention of pore formation in aluminum alloys and, thus, the characterization of the boundary conditions for a reliable process of gas-tight welding on aluminum alloys [C. Prieto, E. Vaamonde, D. Diego-Vallejo, J. Jimenez, B. Urbach, Y. Vidne, and E. Shekel, “Dynamic laser beam shaping for laser aluminium welding in e-mobility applications,” Procedia CIRP. 94, 596–600 (2020)].
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November 2022
Research Article|
October 07 2022
Spatially tailored laser energy distribution using innovative optics for gas-tight welding of casted and wrought aluminum alloys in e-mobility Available to Purchase
Mauritz Möller;
Mauritz Möller
(Conceptualization, Data curation, Methodology, Project administration, Visualization, Writing – original draft, Writing – review & editing)
1
Trumpf Laser- und Systemtechnik GmbH
, Johann-Maus-Straße 2, 71254 Ditzingen, Germany
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Patrick Haug;
Patrick Haug
(Data curation, Methodology, Writing – review & editing)
1
Trumpf Laser- und Systemtechnik GmbH
, Johann-Maus-Straße 2, 71254 Ditzingen, Germany
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Philipp Scheible;
Philipp Scheible
(Data curation, Methodology, Writing – review & editing)
1
Trumpf Laser- und Systemtechnik GmbH
, Johann-Maus-Straße 2, 71254 Ditzingen, Germany
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Christian Buse;
Christian Buse
(Data curation, Methodology, Resources, Visualization, Writing – review & editing)
2
Benteler Automobiltechnik GmbH
, An der Talle 27-31, 33102 Paderborn, Germany
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Conrad Frischkorn;
Conrad Frischkorn
(Data curation, Methodology, Resources, Visualization, Writing – review & editing)
2
Benteler Automobiltechnik GmbH
, An der Talle 27-31, 33102 Paderborn, Germany
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Nicolai Speker
Nicolai Speker
(Data curation, Methodology, Writing – review & editing)
1
Trumpf Laser- und Systemtechnik GmbH
, Johann-Maus-Straße 2, 71254 Ditzingen, Germany
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Mauritz Möller
1
Patrick Haug
1
Philipp Scheible
1
Christian Buse
2
Conrad Frischkorn
2
Nicolai Speker
1
1
Trumpf Laser- und Systemtechnik GmbH
, Johann-Maus-Straße 2, 71254 Ditzingen, Germany
2
Benteler Automobiltechnik GmbH
, An der Talle 27-31, 33102 Paderborn, Germany
Note: Paper published as part of the special topic on Proceedings of the International Congress of Applications of Lasers & Electro-Optics 2022.
J. Laser Appl. 34, 042015 (2022)
Article history
Received:
June 16 2022
Accepted:
September 05 2022
Citation
Mauritz Möller, Patrick Haug, Philipp Scheible, Christian Buse, Conrad Frischkorn, Nicolai Speker; Spatially tailored laser energy distribution using innovative optics for gas-tight welding of casted and wrought aluminum alloys in e-mobility. J. Laser Appl. 1 November 2022; 34 (4): 042015. https://doi.org/10.2351/7.0000735
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