Shape Morphing of Re‐Entrant Honeycomb Metamaterials for Linear Auxetic Behaviors

Re‐Entrant Honeycomb Metamaterials The cover image illustrates a re‐entrant honeycomb metamaterial with graded shape morphing, fabricated via additive manufacturing. The shape morphing is achieved by adaptively changing the geometric parameters of sigmoid‐based morphing functions to enable linear au...

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Veröffentlicht in:Advanced engineering materials 2025-01, Vol.27 (1), p.n/a
Hauptverfasser: Choi, Hong‐Gap, Pyo, Soonjae, Choi, Jae‐Won, Park, Keun
Format: Artikel
Sprache:eng
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Zusammenfassung:Re‐Entrant Honeycomb Metamaterials The cover image illustrates a re‐entrant honeycomb metamaterial with graded shape morphing, fabricated via additive manufacturing. The shape morphing is achieved by adaptively changing the geometric parameters of sigmoid‐based morphing functions to enable linear auxetic behaviors. Six cell designs with different morphing parameters, highlighted in the cover image, are analyzed to achieve linear auxetics with minimal deviations in the negative Poisson’s ratio. The experimental results reveal a 70% reduction in the relative variation of Poisson’s ratio, while maintaining a high magnitude. Further details can be found in article 2400889 by Keun Park and co‐workers.
ISSN:1438-1656
1527-2648
DOI:10.1002/adem.202570001