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  4. Approaching Polycarbonate as an LFT-D Material: Processing and Mechanical Properties
 
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April 2023
Journal Article
Title

Approaching Polycarbonate as an LFT-D Material: Processing and Mechanical Properties

Abstract
Long-fiber thermoplastic (LFT) materials compounded via the direct LFT (LFT-D) process are very versatile composites in which polymers and continuous reinforcement fiber can be combined in almost any way. Polycarbonate (PC) as an amorphous thermoplastic matrix system reinforced with glass fibers (GFs) is a promising addition regarding the current development needs, for example battery enclosures for electromobility. Two approaches to the processing and compression molding of PC GF LFT-D materials with various parameter combinations of screw speed and fiber rovings are presented. The resulting fiber lengths averaged around 0.5 mm for all settings. The tensile, bending, Charpy, and impact properties were characterized and discussed in detail. Special attention to the characteristic charge and flow area formed by compression molding of LFT-D materials, as well as sample orientation was given. The tensile modulus was 10 GPa, while the strength surpassed 125 MPa. The flexural modulus can reach up to 11 GPa, and the flexural strength reached up to 216 MPa. PC GF LFT-D is a viable addition to the LFT-D process, exhibiting good mechanical properties and stable processability.
Author(s)
Schelleis, Christoph  orcid-logo
Fraunhofer-Institut für Chemische Technologie ICT  
Scheuring, Benedikt M.
Karlsruhe Institute of Technology -KIT-  
Liebig, Wielfried V.
Karlsruhe Institute of Technology -KIT-  
Hrymak, Andrew N.
Western University
Henning, Frank  
Fraunhofer-Institut für Chemische Technologie ICT  
Journal
Polymers. Online resource  
Project(s)
Integrated engineering of continuous-discontinuous long fiber reinforced polymer structures
Funder
Deutsche Forschungsgemeinschaft -DFG-, Bonn  
Open Access
DOI
10.3390/polym15092041
10.24406/publica-1270
File(s)
polymers-15-02041-v2.pdf (7.72 MB)
Rights
CC BY 4.0: Creative Commons Attribution
Language
English
Fraunhofer-Institut für Chemische Technologie ICT  
Keyword(s)
  • polycarbonate

  • glass fiber

  • LFT-D

  • composite

  • fiber length

  • mechanical properties

  • specific mechanical energy

  • process parameter selection

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