• Skip navigation
  • Skip to navigation
  • Skip to the bottom
Simulate organization breadcrumb open Simulate organization breadcrumb close
Institute of Polymer Technology (LKT)
  • FAUTo the central FAU website
Suche öffnen
  • en
  • de
  • Faculty of Engineering
  • Department of Mechanical Engineering
  • UnivIS

Institute of Polymer Technology (LKT)

Navigation Navigation close
  • The Team
    • Current Employees
    • Former Employees
    • Guest Scientists
    Portal The Team
  • Career
  • Research
    • Research Focuses
    • Laboratories and Technical Center
    • Publications
    Portal Research
  • Teaching
    • Teaching Offers
    • Student Works
    • Excursions
    • International Exchange
    Portal Teaching
  • Advanced Education
  • News
  • Contact
  1. Home
  2. Research
  3. Research Focuses
  4. Additive Manufacturing
  5. Powder Materials

Powder Materials

In page navigation: Research
  • Research Focuses
    • Additive Manufacturing
      • Powder Materials
      • Process Analysis / Simulation
      • Functionalization
      • Quality Management
      • Medical Additive Manufacturing
    • New Materials and Material Properties
    • Processing
    • Joining Technology and Tribology
    • Downloads
  • Laboratories and Processing Center
  • Publications

Powder Materials

Contact Person

Samuel Schlicht

Samuel Schlicht, M.Sc., M.Sc.

Head of Department

Institute of Polymer Technology
Additive Manufacturing

Room: Room 2.08
Am Weichselgarten 10
91058 Erlangen-Tennenlohe
  • Phone number: +49 9131 85-71073
  • Email: samuel.schlicht@fau.de

Powder Materials

In powdered and beam-based additive manufacturing processes, like the selective laser melting of plastics, a powdery raw material is selectively melted by a laser beam. One demand for processing materials via selective beam-melting is that the raw material is provided as a fine powder with defined bulk properties (e.g. particle size, shape and bulk density). These special raw materials are mostly sold exclusively by the machine manufacturer. So far, the range of commercially available materials is limited to a few semi-crystalline thermoplastics such as polyamide 12 (PA 12) and polyetheretherketone (PEEK). Other thermoplastic materials such as polystyrene (PS) and polycarbonate (PC), although commercially available in powder form, result in parts with large porosities and poor mechanical properties, and are used as casting cores.

Research at the Institute of Polymer Technology is dedicated to overcoming these material-related restrictions, with the aim to develop new applications for additive-manufactured parts. In the field of selective beam melting investigations are focused on the analysis as well as the processing of new polymer powders with greater technical relevance, such as polybutylene terephthalate (PBT), polyoxymethylene (POM), and polypropylene (PP).


Collaborative Research Centre 814

  • Additive Manufacturing
  • Homepage: SFB 814
  • Transfer phase
  • Research at LKT: Flame retardant additive plastic components (T06), Polypropylene components with improved mechanical properties through adjustment of the morphologies (T10)
  • Contact person at LKT: Simon Cholewa, M.Sc.

Institute of Polymer Technology (LKT)
Friedrich-Alexander-University Erlangen-Nuremberg

Am Weichselgarten 10
91058 Erlangen-Tennenlohe
Germany
  • Imprint
  • Privacy
  • Accessibility
  • Linkedin
Up