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Collaborative Research Center 814

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    • A – Powder / Materials
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  2. Projects
  3. T – Transferproject

T – Transferproject

Bereichsnavigation: Projects
  • A - Powder / Materials
  • B - Processes
  • C - Components
  • T - Transferproject
    • Transferproject T1
    • Transferproject T2
    • Transferproject T3
    • Transferproject T5
    • Transferproject T6
    • Transferproject T7
    • Transferproject T8
    • Transferproject T9
    • Transferproject T10

T – Transferproject

Transfer projects in the CRC814 provide a platform to test results obtained through basic research in the project areas a, b and c under practical conditions or to develop prototypes. Through research carried out jointly by academics and application partners, these projects aim to improve the mutual exchange between of applied research back into basic research.

Transfer projects serve to verify the results of basic research carried out in a Collaborative Research Centre under practical conditions or to enable the development of prototypes. They also provide a framework for joint research by researchers and external partners and facilitate the exchange of results from applied research back into basic research. In transfer projects, CRC researchers cooperate with external partners, such as industry, service providers and public institutions. Application areas range from industrial production to method and process development, from the service sector right through to social projects in areas such as education, health and the environment. An individual transfer project can be funded for up to four years.

T1 – Powder quality management systems
(Professor Dr.-Ing. Dietmar Drummer / Dr. rer. nat. Jochen Schmidt)

 

T2 – Modelling of metallic glasses
(Dr.-Ing. Matthias Markl / Professor Dr.-Ing. habil. Caroline Körner)

 

T3 – Thin-walled component structures in selective laser melting of plastics
(Professor Dr.-Ing. Dietmar Drummer / Professor Dr. Michael Stingl)

 

T5 – Tailored properties of PBF-LB/M components by local in situ alloy formation
(Professor Dr.-Ing. Michael Schmidt / Dr.-Ing. Stephan Roth)

 

T6 – Flame retardant additive plastic components
(Professor Dr.-Ing. Dietmar Drummer)

 

T7 – Homogeneous material properties for PBF-EB components
(Dr.-Ing. Matthias Markl)

 

T8 – Two-color thermography for increased process robustness
(Prof. Dr.-Ing. Michael Schmidt)

 

T9 – Calibration of a mesoscopic simulation tool for PBF-EB by electron optical evaluation
(Professor Dr.-Ing. habil. Carolin Körner)

 

T10 – Polypropylene components with improved mechanical properties through adjustment of the morphologies
(Professor Dr.-Ing. Dietmar Drummer)

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Friedrich-Alexander-Universität
Erlangen-Nürnberg

Schlossplatz 4
91054 Erlangen
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