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Collaborative Research Center 814

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  5. Subproject B3 – Research System

Subproject B3 – Research System

Bereichsnavigation: Projects
  • A - Powder / Materials
  • B - Processes
    • Subproject B1
    • Subproject B2
    • Subproject B3
      • Subproject B3 - Research System
    • Subproject B5
    • Subproject B6
    • Subproject B7
  • C - Components
  • T - Transferproject

Subproject B3 – Research System

Forschungsanlage des Sonderforschungsbereichs 814 – Additive Fertigung

The research system of the Collaborative Research Centre 814 – Additive Manufacturing is a self-established and almost freely parameterizable and temperature-stabilized laser beam melting system.

It allows for a homogeneous temperature distribution on the building space, which is a basic requirement for the fabrication process guaranteed by an eight-zone IR surface heating system. The maximum build chamber temperature is 230°C, which enables the processing of plastics with higher melting temperatures. The scanning system is state of the art and guarantees short acceleration times as well as high precision in beam guiding. The integrated f-theta lens of the laser system enables constant intensity distributions almost over the entire build chamber surface of 350 x 350 mm2. The maximum build height is 500 mm. The focus diameter of the CO2 laser is 400 µm and the maximum nominal power is 50 W.

The research system has a wide range of additional equipment, which is used especially for process analysis and processing of new powder materials in small quantities. Thus, different setups can be integrated into the system, which make it possible to reduce the installation space and to control the temperature. In addition, a reduction of the powder storage container is available, too. Different recoating geometries are available for powder application, e.g. different blade geometries or a counter rotating roller. Furthermore, for the observation of the thermal boundary conditions and the exposure process as well as the melt pool formation an infrared camera system can be integrated into the research system.

This high-end adaptable research system is used to answer the most complex questions regarding laser sintering of polymers.
Hersteller: Self-construction in cooperation with LSS Europe GmbH
Modell: Research System of the Collaborative Research Centre 814 – Additive Manufacturing
Baujahr: 2012
Standort: Erlangen
Mittelgeber: DFG / Sonderforschungsbereich (SFB)

Einsatz in Forschungsprojekten:

  • Neue Prozessstrategien für das Laserstrahlschmelzen von Kunststoffen (B3)

Zugehörige Publikationen:

  • Lerchen M., Schinn J., Hausotte T.:
    Referencing of powder bed for in situ detection of lateral layer displacements in additive manufacturing
    In: Journal of Sensors and Sensor Systems 10 (2021), S. 247-259
    ISSN: 2194-8771
    DOI: 10.5194/jsss-10-247-2021
  • Lerchen M., Hornung J., Zou Y., Hausotte T.:
    Methods and procedure of referenced in situ control of lateral contour displacements in additive manufacturing
    In: Journal of Sensors and Sensor Systems 10 (2021), S. 219-232
    ISSN: 2194-8771
    DOI: 10.5194/jsss-10-219-2021
  • Greiner S., Lanzl L., Wudy K., Drummer D.:
    A new approach for getting more homegeneous temperature fields in selective laser sintering of polymers
    PPS (Polymer Processing Society) (Dresden, 26. Juni 2017 - 29. Juni 2017)
    In: AIP Conference Proceedings 2055 2019
    DOI: 10.1063/1.5084907
  • Greiner S., Wudy K., Wörz A., Drummer D.:
    Thermographic investigation of laser-induced temperature fields in selective laser beam melting of polymers
    In: Optics and Laser Technology 109 (2019), S. 569-576
    ISSN: 0030-3992
    DOI: 10.1016/j.optlastec.2018.08.010
  • Drexler M., Kühnlein F., Drummer D.:
    Influence of powder coating on part density as a function of coating parameters
    4th International Conference on Additive Technologies (Maribor)
    In: 4th International Conference on Additive Technologies 2012

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Friedrich-Alexander-Universität
Erlangen-Nürnberg

Schlossplatz 4
91054 Erlangen
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