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Design of an underwater acoustic bend by pentamode metafluid

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TLDR
In this paper, an impedance matching underwater acoustic bend with pentamode microstructure is designed, where the effective density and compressive modulus of each unit cell can be tuned simultaneously to guarantee both the bending effect and high transmission.
Abstract
In this paper, an impedance matching underwater acoustic bend with pentamode microstructure is designed. The proposed bend is assembled by pentamode lattice. The effective density and compressive modulus of each unit cell can be tuned simultaneously, which are modulated to guarantee both the bending effect and high transmission. The standard deviations (SDs) of transmitted phase are calculated to quantitatively evaluate the degree of the distortion of the transmitted wavefront, while the transmission is calculated to appraise the degree of acoustic impedance matching. The low SDs and high transmission indicate that the designed bend has a nice broadband bending effect and is impedance-matched to water. This design has potential applications in underwater communication and underwater detection.

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Acoustic Metamaterials for Noise Reduction: A Review

TL;DR: In this paper , the authors introduce the development of acoustic metamaterials, and summarizes the basic classification, underlying physical mechanism, application scenarios, and emerging research trends for both passive and active noise reduction metammaterials.
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Quasi-isotropic underwater acoustic carpet cloak based on latticed pentamode metafluid

TL;DR: In this paper, an underwater acoustic carpet cloak with 2-dimensional version of the pentamode lattice is presented. But the performance of the proposed carpet cloak has not been evaluated.
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Topological design of pentamode lattice metamaterials using a ground structure method

TL;DR: In this article, a truss-based ground structure with geometrically orthotropic symmetry is generated, with geometric constraints to avoid intersection and overlap of truss bars within the ground structure.
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Customized broadband pentamode metamaterials by topology optimization

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Journal ArticleDOI

Broadband and High-Transmission Metasurface for Converting Underwater Cylindrical Waves to Plane Waves

TL;DR: In this paper, the authors proposed an easy means to transform cylindrical waves into plane waves, through phase rectification with graded aluminum honeycomb structures, allowing mimicking of the acoustic behavior of fluids.
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