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  4. Permeability and fabric compaction in forming of fiber metal laminates
 
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2023
Journal Article
Title

Permeability and fabric compaction in forming of fiber metal laminates

Abstract
Significant fluid-structure interaction is present in fiber metal laminate forming with a low viscous matrix. A modular, process-inspired test setup is presented for one-dimensional saturated and unsaturated infiltration experiments for fiber metal laminates. Permeability measurements for different fabric orientations, fabric layers, and fiber volume contents show low scatter and good repeatability for fiber volume contents up to 65%. Fiber metal laminate specimens were formed by exchanging the mid-segment of the test setup with a punch and die. The stiffness differences between metal and fabric lead to remarkably high compactions in the bending radii, significantly reducing the flow during infiltration. Contrary to resin transfer molding processes, no formation of resin-rich zones along bending edges occurs due to the high normal pressures from metal forming. A numerical forming simulation was developed to predict the local fiber volume content. Comparing the experimental results with the numerical simulation shows that the high fiber volume content in the radii almost exclusively impacts the overall permeability. Implications for fiber metal laminate processing and modeling are outlined.
Author(s)
Kruse, Moritz
Leuphana University of Lüneburg
Poppe, Christian T.
Karlsruhe Institute of Technology -KIT-  
Henning, Frank  
Fraunhofer-Institut für Chemische Technologie ICT  
Ben Khalifa, Noomane
Leuphana University of Lüneburg
Journal
Journal of composite materials : JCM  
DOI
10.1177/00219983231175725
Language
English
Fraunhofer-Institut für Chemische Technologie ICT  
Keyword(s)
  • compaction

  • fabrics/textiles

  • fiber metal laminates

  • finite-element-analysis

  • fluid-structure interaction

  • forming

  • in-situ hybridization

  • liquid composite molding

  • Permeability

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