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  4. Characterization and simulation of the interface between continuously and discontinuously fiber reinforced thermoplastics
 
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2023
Conference Paper
Title

Characterization and simulation of the interface between continuously and discontinuously fiber reinforced thermoplastics

Abstract
Fiber-reinforced polymers are a promising class of materials that have achieved increasing market value in the automotive and lightweight construction sectors due to their high specific strength and stiffness properties [1]. In times of global warming, it is necessary to keep in mind reliable recycling processes after the respective lifetime of a component. Therefore, reinforced thermoplastics offer good processability and recyclability compared to conventional reinforced thermosets. Despite having the highest stiffness and strength within this class, continuous fiber reinforced polymers (Co-FRP) require a more complex processing procedure and offer limited design freedom. In contrast, discontinuous fiber-reinforced polymers (DiCo-FRP) avoid these limitations, with reduced stiffness and strength properties. In order to solve this conflict of objectives and to combine high specific strength and stiffness while still maintaining great freedom of design, it is possible to locally reinforce DiCo-FRP with Co-FRP tapes, which is called Co-DiCo-FRP here.
Author(s)
Christ, Nicolas
Karlsruhe Institute of Technology KIT, Institute for Applied Materials
Scheuring, Benedikt
Karlsruhe Institute of Technology -KIT-, Institute for Applied Materials
Montesano, John
University of Waterloo, Department of Mechanical and Mechatronics Engineering
Hohe, Jörg  
Fraunhofer-Institut für Werkstoffmechanik IWM  
Mainwork
ICCM 2023, 23rd International Conference on Composite Materials. Proceedings. Online resource  
Project(s)
Integrated engineering of continuous discontinuous long fiber reinforced polymer structures
Funder
Deutsche Forschungsgemeinschaft -DFG-, Bonn  
Conference
International Conference on Composites Materials 2023  
Link
Link
Language
English
Fraunhofer-Institut für Werkstoffmechanik IWM  
Keyword(s)
  • CoDiCo-FRP

  • Interface

  • Humidity

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