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  5. The topological design of multifunctional cellular metals

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Article
English
2001

The topological design of multifunctional cellular metals

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English
2001
Progress in Materials Science
Vol 46 (3-4)
DOI: 10.1016/s0079-6425(00)00016-5

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John W. Hutchinson
John W. Hutchinson

Harvard University

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A.G. Evans
John W. Hutchinson
N.A. Fleck
+2 more

Abstract

The multifunctional performance of stochastic (foamed) cellular metals is now well documented. This article compares such materials with the projected capabilities of materials with periodic cells, configured as cores of panels, tubes and shells. The implementation opportunities are as ultra-light structures, for compact cooling, in energy absorption and vibration control. The periodic topologies comprise either micro-truss lattices or prismatic materials. Performance benefits that can be expected upon implementing these periodic materials are presented and compared with competing concepts. Methods for manufacturing these materials are discussed and some cost/performance trade-offs are addressed.

How to cite this publication

A.G. Evans, John W. Hutchinson, N.A. Fleck, Michael F. Ashby, H.N.G. Wadley (2001). The topological design of multifunctional cellular metals. Progress in Materials Science, 46(3-4), pp. 309-327, DOI: 10.1016/s0079-6425(00)00016-5.

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Publication Details

Type

Article

Year

2001

Authors

5

Datasets

0

Total Files

0

Language

English

Journal

Progress in Materials Science

DOI

10.1016/s0079-6425(00)00016-5

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