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  5. Tough, Bio-Inspired Hybrid Materials

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Article
English
2008

Tough, Bio-Inspired Hybrid Materials

0 Datasets

0 Files

English
2008
Science
Vol 322 (5907)
DOI: 10.1126/science.1164865

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Robert O. Ritchie
Robert O. Ritchie

University of California, Berkeley

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Étienne Munch
Maximilien E. Launey
Daan Hein Alsem
+3 more

Abstract

The notion of mimicking natural structures in the synthesis of new structural materials has generated enormous interest but has yielded few practical advances. Natural composites achieve strength and toughness through complex hierarchical designs that are extremely difficult to replicate synthetically. We emulate nature's toughening mechanisms by combining two ordinary compounds, aluminum oxide and polymethyl methacrylate, into ice-templated structures whose toughness can be more than 300 times (in energy terms) that of their constituents. The final product is a bulk hybrid ceramic-based material whose high yield strength and fracture toughness [ approximately 200 megapascals (MPa) and approximately 30 MPa.m(1/2)] represent specific properties comparable to those of aluminum alloys. These model materials can be used to identify the key microstructural features that should guide the synthesis of bio-inspired ceramic-based composites with unique strength and toughness.

How to cite this publication

Étienne Munch, Maximilien E. Launey, Daan Hein Alsem, E. Saiz, Antoni P. Tomsia, Robert O. Ritchie (2008). Tough, Bio-Inspired Hybrid Materials. Science, 322(5907), pp. 1516-1520, DOI: 10.1126/science.1164865.

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Publication Details

Type

Article

Year

2008

Authors

6

Datasets

0

Total Files

0

Language

English

Journal

Science

DOI

10.1126/science.1164865

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