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Improvements in carbon fibre reinforced composites by inkjet printing of thermoplastic polymer patterns
Authors:Yi Zhang  Jonathan Stringer  Richard Grainger  Patrick J Smith  Alma Hodzic
Institution:1. Composite Systems Innovation Centre, Department of Mechanical Engineering, The University of Sheffield, S1 3JD, Sheffield, UK;2. The Advanced Manufacturing Research Centre, The University of Sheffield, S60 5TZ, Rotherham, UK
Abstract:A thermoplastic polymer solution was inkjet printed in a pre‐defined hexagonal pattern onto carbon fibre reinforced epoxy resin (CFRP), leading to a significant increase in strength, stiffness and toughness of the final aerospace grade compo‐site system. The approach consisted of depositing low‐viscosity polymer microdroplets having chemically and me‐chanically comparable properties to epoxy polymer, onto CFRP before curing and solidification. The microdroplets remained arrested between composite plies without direct contact with the neighbouring microdroplets ensuring preservation of the structural integrity of the new composite system after curing. The key to achieving this synergistic effect was in appropriately selected additive materials; however, the novel aspects also included the method itself, which enabled an accurate crack arrest mechanism.
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Keywords:carbon fibre reinforced composites  inkjet printing  fracture  shear modulus  shear strength  polymers
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