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An investigation into the impact resistance of bio-inspired laminates with interlayer hybrid unidirectional/woven carbon fibers

  • Shicai Zhao
  • , Xiaoming Yin
  • , Deyuan Zhang*
  • *Corresponding author for this work
  • Beihang University

Research output: Contribution to journalArticlepeer-review

Abstract

This study investigates the rapid mandible strike behavior of trap-jaw ants (Odontomachus monticola), a highly aggressive species of terrestrial social organisms. An impact-resistant gradient waviness structure is discovered in the mandibles of trap-jaw ants. The gradient waviness structure is incorporated into the fiber laminates to enhance their impact resistance and damage tolerance. Bioinspired interlayer hybrid laminates with both unidirectional and woven arrangements were fabricated using the mold press forming technique. The impact resistance and damage tolerance of the bionic laminates are investigated through low-velocity impact, ultrasonic C-scanning, and compression after impact tests. The results indicate that hybrid laminates play a key role in limiting damage propagation and improving energy dissipation capacity. The hybrid configuration effectively mitigates crack propagation, enhances load-bearing capacity, and improves residual compressive strength. Bionic laminates offer an efficient solution for enhancing damage tolerance against through-the-thickness loads. Highlights: An impact-resistant gradient waviness structure is discovered in trap-jaw ants. Bioinspired interlayer hybrid laminate is fabricated by mold pressing. The hybrid laminate restrict damage propagation and improve residual strength. Bionic laminate offer an efficient solution for enhancing damage tolerance.

Original languageEnglish
Pages (from-to)7485-7498
Number of pages14
JournalPolymer Composites
Volume44
Issue number11
DOIs
StatePublished - Nov 2023

Keywords

  • bio-inspired
  • gradient waviness structure
  • impact resistance
  • interlayer hybrid

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