4.6 Article

Structural designs, principles, and applications of thin-walled membrane and plate-type acoustic/elastic metamaterials

期刊

JOURNAL OF APPLIED PHYSICS
卷 129, 期 23, 页码 -

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AMER INST PHYSICS
DOI: 10.1063/5.0042132

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资金

  1. National Natural Science Foundation of China (NNSFC) [51705395]

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Using well-designed acoustic metamaterial structures can achieve many advanced physical properties, with thin-walled structures attracting attention from researchers and engineers in various specialized fields. This tutorial systematically introduced the structural design methods, acoustic/elastic wave attenuation and regulation principles, and engineering applications of thin-walled acoustic metamaterials.
Many advanced physical properties can be realized by using well-designed acoustic metamaterial (AM) structures, which have significant application value in engineering. In particular, thin-walled membrane, plate, and shell-type structures with deep subwavelength thicknesses that can meet light weight requirements have attracted the attention of many researchers and engineers from various specialized fields. This Tutorial systematically introduced the structural design methods, acoustic/elastic wave attenuation and regulation principles, and engineering applications of thin-walled AMs for low-frequency sound insulation, sound absorption, and vibration reduction. In particular, the design methods and sound insulation/absorption properties of thin-walled AMs for realizing narrow-band and broadband sound attenuation were explored. Furthermore, the local resonance bandgap characteristics, quantitative extraction method for the bending wave bandgap, vibration suppression properties, and the design method for local resonance vibration dampers for elastic wave regulation by thin-walled elastic metamaterials were summarized successively. Moreover, other thin-walled AM applications, such as the wavefront steering performance of thin-walled acoustic/elastic metasurfaces, and the active thin-walled AMs, were introduced as well.

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