Strong, tough and stiff bioinspired ceramics from brittle constituents.

Nat Mater

Laboratoire de Synthèse et Fonctionnalisation des Céramiques, UMR3080 CNRS/Saint-Gobain, Cavaillon F-69621, France.

Published: May 2014

AI Article Synopsis

  • High strength and toughness in engineering materials are typically opposing qualities, particularly in ceramics, where adding ductile phases can weaken the overall structure.
  • Bioinspired techniques have been developed to create bulk ceramics that achieve high strength (470 MPa), toughness (22 MPa m(1/2)), and stiffness (290 GPa) without needing a ductile phase.
  • This innovative method allows for retaining mechanical properties at elevated temperatures (up to 600 °C) and has potential applications in structural, transportation, and energy-related fields.

Article Abstract

High strength and high toughness are usually mutually exclusive in engineering materials. In ceramics, improving toughness usually relies on the introduction of a metallic or polymeric ductile phase, but this decreases the material's strength and stiffness as well as its high-temperature stability. Although natural materials that are both strong and tough rely on a combination of mechanisms operating at different length scales, the relevant structures have been extremely difficult to replicate. Here, we report a bioinspired approach based on widespread ceramic processing techniques for the fabrication of bulk ceramics without a ductile phase and with a unique combination of high strength (470 MPa), high toughness (22 MPa m(1/2)), and high stiffness (290 GPa). Because only mineral constituents are needed, these ceramics retain their mechanical properties at high temperatures (600 °C). Our bioinspired, material-independent approach should find uses in the design and processing of materials for structural, transportation and energy-related applications.

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Source
http://dx.doi.org/10.1038/nmat3915DOI Listing

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