Journal article
Highly stretchable two-dimensional auxetic metamaterial sheets fabricated via direct-laser cutting
- Abstract:
- The design and production of multifunctional materials possessing tailored mechanical properties and specialized characteristics is a major theme in modern materials science, particularly for implementation in high-end applications in the biomedical and electronics industry. In this work, a number of metamaterials with perforated architectures possessing the ability to exhibit a plethora of 2D auxetic responses with negative Poisson's ratios ranging from quasi-zero to large negative values (lower than −3.5), stiffnesses, stretchability and surface coverage properties were manufactured. These systems were produced through the introduction of microstructural cuts in a rubber sheet using direct laser cutting, and analysed using a dual approach involving experimental tests and Finite Element Analysis. In addition to examining the mechanical properties of the perforated metamaterials, the influence of edge effects and material thickness on the deformation behaviour of these systems were investigated, with re-entrant systems shown to possess anomalous deformation profiles which are heavily dominated by the boundary regions. These findings highlight the effectiveness of this method for the fabrication of auxetic metamaterial sheets as well as the large variety of mechanical properties, deformation mechanisms and load responses which may be obtained through what may be effectively described as simply the introduction of patterned cuts in a thin sheet.
- Publication status:
- Published
- Peer review status:
- Peer reviewed
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- Files:
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(Preview, Accepted manuscript, pdf, 3.6MB, Terms of use)
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- Publisher copy:
- 10.1016/j.ijmecsci.2019.105242
Authors
- Publisher:
- Elsevier
- Journal:
- International Journal of Mechanical Sciences More from this journal
- Volume:
- 167
- Article number:
- 105242
- Publication date:
- 2019-10-21
- Acceptance date:
- 2019-10-13
- DOI:
- ISSN:
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0020-7403
- Language:
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English
- Keywords:
- Pubs id:
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pubs:1068775
- UUID:
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uuid:61962177-e5f8-48c6-8eef-a3c125ec804d
- Local pid:
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pubs:1068775
- Source identifiers:
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1068775
- Deposit date:
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2019-10-31
Terms of use
- Copyright holder:
- Elsevier Ltd.
- Copyright date:
- 2019
- Rights statement:
- © 2019 Elsevier Ltd. All rights reserved.
- Notes:
-
This is the accepted manuscript version of the article. The final version is available from Elsevier at https://doi.org/10.1016/j.ijmecsci.2019.105242
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