Infrared laser based contacting of bar-wound windings in the field of electric drives production

Gläßel T, Baat F, Schwinghammer D, Seefried J, Kühl A, Franke J (2018)


Publication Language: English

Publication Type: Conference contribution, Conference Contribution

Publication year: 2018

Pages Range: 17-22

Conference Proceedings Title: Procedia CIRP, Volume 74

Event location: Fuerth DE

DOI: 10.1016/j.procir.2018.08.005

Open Access Link: https://www.sciencedirect.com/science/article/pii/S2212827118307881

Abstract

Driven by electric mobility innovative winding methods increasing the copper fill ratio and thus the power density of electrical drives gain in importance. Compared to conventional windings, bar-wound windings based on rectangular cross sections besides optimized copper fill ratios also offer advantages in terms of automated production. Because of the high number of joints necessary for the manufacturing of the winding, contacting efforts increase significantly wherefore the process of laser welding, due to its short process times and high reproducibility shows potentials to realize the process step. This paper examines the most important interactions within the process of laser welding of insulated copper wires with rectangular cross sections in the context of electric drives production. Besides workpiece specific factors, the focus is set on process parameters, beam guidance strategies and specific quality requirements. For this purpose, a parameter study based on design of experiments is executed in which suitable measuring technologies are used to quantify the properties of the samples.


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How to cite

APA:

Gläßel, T., Baat, F., Schwinghammer, D., Seefried, J., Kühl, A., & Franke, J. (2018). Infrared laser based contacting of bar-wound windings in the field of electric drives production. In M. Schmidt, F. Vollertsen, G. Dearden (Eds.), Procedia CIRP, Volume 74 (pp. 17-22). Fuerth, DE.

MLA:

Gläßel, Tobias, et al. "Infrared laser based contacting of bar-wound windings in the field of electric drives production." Proceedings of the 10th CIRP Conference on Photonic Technologies [LANE 2018], Fuerth Ed. M. Schmidt, F. Vollertsen, G. Dearden, 2018. 17-22.

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