JOURNAL ARTICLE

Strong and super tough: Layered ceramic‐polymer composites with bio‐inspired morphology

Evgeny PogorelovKamen TushtevAndré ArneboldKatharina KoschekAndreas HartwigKurosch Rezwan

Year: 2018 Journal:   Journal of the American Ceramic Society Vol: 101 (10)Pages: 4732-4742   Publisher: Wiley

Abstract

Abstract Bio‐inspired layered ceramic‐polymer composites with high strength and toughness were prepared from sintered aluminum oxide ceramic sheets and cationically curing epoxy resins toughened with poly(ε‐caprolactone) ( PCL ). The architecture of the composite is inspired by nacre but is arranged on a larger scale. Ceramic sheets with a nominal thickness of 250 μm were assembled into composite plates by adhesive layers with a nominal thickness of 20 μm. Before the manufacturing of the composites, the stress‐strain properties of the polymer component were tailored by the variation in the PCL content between 0 and 39 wt%. For composites with 4 and 15 ceramic layers, the bending strengths achieved 327 MPa and 376 MPa, which are higher than that of pure ceramic sheets. Moreover, composites with 15 ceramic layers show a 16 times higher toughness compared to that of the pure ceramic sheets. The results indicate that the toughness of the layered composites increases significantly with the number of layers. Inspired by the geometrical ratio of the natural sheet composite nacre, we have achieved a similar strength but a 2 times higher toughness than nacre by only adding up to 6 vol% of the polymer.

Keywords:
Materials science Composite material Ceramic Toughness Composite number Polymer Adhesive Epoxy Fracture toughness Curing (chemistry) Layer (electronics)

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Citation History

Topics

Calcium Carbonate Crystallization and Inhibition
Physical Sciences →  Materials Science →  Biomaterials
Bone Tissue Engineering Materials
Physical Sciences →  Engineering →  Biomedical Engineering
Material Selection and Properties
Physical Sciences →  Materials Science →  Materials Chemistry

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