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Collaborative Research Center 814

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  4. Subproject B5

Subproject B5

Bereichsnavigation: Projects
  • A - Powder / Materials
  • B - Processes
    • Subproject B1
    • Subproject B2
    • Subproject B3
    • Subproject B5
    • Subproject B6
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Subproject B5

Subproject B5

Additive and formative manufacturing of hybrid parts with locally adapted, tailored properties

Aim of this subproject is to investigate the combination of additive manufacturing and forming technology for the production of tailored, functionalized and individualized titanium hybrid parts, fundamentally. Besides the sheet metal body also the additively manufactured elements of the hybrid parts will be formed. This leads to a defined work-hardening of the material and locally adjusted properties. By the spatially resolved application of additives in combination with in situ alloying during Laser Beam Melting (LBM) a local material modification is intended. This modification is supposed to be adjustable to the demands of the forming operation as well as to the demands of the later use case.

Hybrid parts including different forming operations
Investigations on the joint strength of hybrid parts
Optical strain measurement of hybrid parts with functional elements in different strain states
Hybrid part
Hybrid parts including different forming operations
Investigations on the joint strength of hybrid parts
Optical strain measurement of hybrid parts with functional elements in different strain states
Hybrid part

Contact:

Merklein, Marion

Prof. Dr.-Ing. habil. Marion Merklein

Project Leader B5

Institute of Manufacturing Technology (LFT)
Lehrstuhl für Fertigungstechnologie (LFT, Prof. Merklein)

  • Telefon: +49 9131 85-27140
  • E-Mail: marion.merklein@fau.de

Schmidt, Michael

Prof. Dr.-Ing. Michael Schmidt

Project Leader A3, A5, B5, T5, T8

Lehrstuhl für Photonische Technologien (LPT, Prof. Schmidt)
Institute of Photonic Technologies (LPT)

  • Telefon: +49 9131 85-23234
  • E-Mail: michael.schmidt@lpt.uni-erlangen.de

  • Hafenecker J., Rothfelder R., Schmidt M., Merklein M.:
    Stretch Forming of Ti-6Al-4V Hybrid Parts at Elevated Temperatures
    19th International Conference on Sheet Metal (Shemet 2021) (Erlangen, 29. März 2021 - 31. März 2021)
    In: Merklein, M.; Duflou, J.; Fratini, L.; Hagenah, H.; Martins, P.; Meschut, G.; Micari, F. (Hrsg.): Sheet Metal 2021, Zürich: 2021
    DOI: 10.4028/www.scientific.net/KEM.883.135
  • Hafenecker J., Papke T., Huber F., Schmidt M., Merklein M.:
    Modelling of Hybrid Parts Made of Ti-6Al-4V Sheets and Additive Manufactured Structures
    Production at the leading edge of technology - Proceedings of the 10th Congress of the German Academic Association for Production Technology (WGP) (Dresden (digital), 23. September 2020 - 24. September 2020)
    In: Behrens, Bernd-Arno; Brosius, Alexander; Hintze, Wolfgang; Ihlenfeldt, Steffen; Wulfsberg, Jens Peter (Hrsg.): Proceedings of the 10th Congress of the German Academic Association for Production Technology (WGP), Berlin, Heidelberg: 2020
    DOI: 10.1007/978-3-662-62138-7_2
  • Hafenecker J., Papke T., Merklein M.:
    Influence of Stress States on Forming Hybrid Parts with Sheet Metal and Additively Manufactured Element
    In: Journal of Materials Engineering and Performance (2021)
    ISSN: 1059-9495
    DOI: 10.1007/s11665-021-05674-8
  • Hafenecker J., Kuball CM., Rothfelder R., Schmidt M., Merklein M.:
    Surface modification of additively manufactured parts by forming
    ESAFORM 2021 (Liège, 14. April 2021 - 16. April 2021)
    DOI: 10.25518/esaform21.2124
  • Papke T., Huber F., Hafenecker J., Schmidt M., Merklein M.:
    Hybride Bauteile, Werkzeuge und Prozessketten – Anwendungen der Kombination aus Additiver Fertigung und Umformtechnik
    7. Industriekolloquium des Sonderforschungsbereichs 814 - Additive Fertigung (Nürnberg)

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Friedrich-Alexander-Universität
Erlangen-Nürnberg

Schlossplatz 4
91054 Erlangen
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