4.6 Review

Mechanical Metamaterials and Their Engineering Applications

Journal

ADVANCED ENGINEERING MATERIALS
Volume 21, Issue 3, Pages -

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adem.201800864

Keywords

mechanical metamaterial; microlattice; nanomanufacturing; nanomechanics; origami; structural materials; 3D printing

Funding

  1. Shenzhen Science and Technology Innovation Committee [JCYJ20170413141157573]
  2. Research Grants Council of the Hong Kong Special Administrative Region of China (GRF) [CityU11216515]
  3. City University of Hong Kong [9667164, 9667153]
  4. U. S. Army Research Office through the Institute for Soldier Nanotechnologies at MIT [W911NF-13-D-0001]
  5. United States-Israel Binational Science Foundation (BSF) [2016284]

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In the past decade, mechanical metamaterials have garnered increasing attention owing to its novel design principles which combine the concept of hierarchical architecture with material size effects at micro/nanoscale. This strategy is demonstrated to exhibit superior mechanical performance that allows us to colonize unexplored regions in the material property space, including ultrahigh strength-to-density ratios, extraordinary resilience, and energy absorption capabilities with brittle constituents. In the recent years, metamaterials with unprecedented mechanical behaviors such as negative Poisson's ratio, twisting under uniaxial forces, and negative thermal expansion are also realized. This paves a new pathway for a wide variety of multifunctional applications, for example, in energy storage, biomedical, acoustics, photonics, and thermal management. Herein, the fundamental scientific theories behind this class of novel metamaterials, along with their fabrication techniques and potential engineering applications beyond mechanics are reviewed. Explored examples include the recent progresses for both mechanical and functional applications. Finally, the current challenges and future developments in this emerging field is discussed as well.

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