Picture of Fabian Vieltorf

Fabian Vieltorf, M.Sc.

Technical University of Munich

Postal address

Postal:
Boltzmannstr. 15
85748 Garching b. München

Department Machine Tools

Leader of the Research Field Process Behavior

Phone:: +49 (89) 289 - 55469
Email: fabian.vieltorf@iwb.tum.de

Main areas of research

Artificial intelligence in Friction Stir Welding (FSW):

  • Development of machine learning methods for the use in FSW
  • Analysis of alignment discrepancies in FSW
  • Image processing for the detection of weld seam defects in FSW

Hydrogen transport and storage:

  • Lightweight tanks for the liquid hydrogen (LH2) transportation
  • Use of high-strength aluminum alloys and the FSW process
  • Use of heavy equipment for faster refueling

Publications

2023

  • Sigl, Martina E.; Vieltorf, Fabian; Bernauer, Christian; Hartl, Roman; Zaeh, Michael F.: Determining material model parameters by optimization for temperature controlled friction stir additive manufacturing. Procedia CIRP 120, 2023, 475-480 more…

2022

  • Vieltorf, F.; Hartl, R.; Zäh, M. F.: Rührreibschweißen -- Analyse der Prozessantworten mittels Methoden der künstlichen Intelligenz (KI). In: DVS Congress 2022: Langfassungen der Vorträge der Veranstaltung in Koblenz vom 19. bis 21. September 2022. DVS Media GmbH, 2022, 558--565 more…
  • Vieltorf, Fabian; Sigl, Martina Elisabeth; Hartl, Roman; Zaeh, Michael F.: Online Detection of Part Fit-Up and Mating Variations in Friction Stir Welding. SSRN Electronic Journal, 2022 more…

2021

  • Blasl, Jacqueline; Vieltorf, Fabian; Hanenkamp, Nico; Zäh, F. Michael: Grundstein für neuartige Bearbeitungsstrategie gelegt. VDI-Z 163 (01-02), 2021, 29-31 more…

2020

  • Hartl, Roman; Vieltorf, Fabian; Benker, Maximilian; Zaeh, Michael F.: Predicting the Ultimate Tensile Strength of Friction Stir Welds Using Gaussian Process Regression. Journal of Manufacturing and Materials Processing 4 (3), 2020, 75 more…
  • Hartl, Roman; Vieltorf, Fabian; Zaeh, Michael F.: Correlations between the Surface Topography and Mechanical Properties of Friction Stir Welds. Metals 10 (7), 2020, 890 more…