Auxetic hybrid metamaterial with tunable elastic wave bandgap
Author(s): |
Gui Lei Chen
Zhi Tao Yu Ming Luo Yi Zhang Yang Pan Dong Han Fu Yin Ma Rui Zhu Xin Ren |
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Medium: | journal article |
Language(s): | English |
Published in: | Smart Materials and Structures, 7 June 2024, n. 7, v. 33 |
Page(s): | 075013 |
DOI: | 10.1088/1361-665x/ad5090 |
Abstract: |
Auxetic metamaterials have shown good stability and uniform deformation capabilities against influences (vibration, temperature change, load change), making them significant in maintaining and adjusting the bandgap of phonon crystals. The low-frequency and broadband are the important goals of phonon crystals. For most traditional re-entrant honeycomb structures (T-RHS), the bandgap range is narrow and tunability is poor. Here, an auxetic hybrid structure with tunable acoustic bandgap (AHS-T) consisting of periodic mass inclusions integrated with traditional re-entrant honeycomb and chiral hybrid is proposed. Aiming at investigating the tunability of the bandgap in the low-frequency range. Compared with T-RHS, the bandgap real-time adjustment and wider bandwidth of the AHS-T be realized during compression and tension. The numerical results show that the bandgap of the AHS-T can be flexibly tailored by reasonably adjusting the strain and geometrical configurations of AHS-T. The bandwidth of AHS-T can be increased to 87.1% when the bottom diameter |
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data sheet - Reference-ID
10783870 - Published on:
20/06/2024 - Last updated on:
20/06/2024