Utilizing reversible solid–liquid phase transition to tune phononic bandgaps
Author:
Affiliation:
1. College of Hydraulic and Environmental Engineering, China Three Gorges University, Yichang, Hubei 443002, China
Funder
Graduate Education Research of CTGU
Publisher
AIP Publishing
Subject
General Physics and Astronomy
Link
https://aip.scitation.org/doi/pdf/10.1063/5.0077881
Reference48 articles.
1. Phononic band-gaps of Hoberman spherical metamaterials in low frequencies
2. Broad band gaps for flexural wave manipulation in plates with embedded periodic strip acoustic black holes
3. Wave and vibration analysis of elastic metamaterial and phononic crystal beams with slowly varying properties
4. Band structure analysis of Green-Naghdi-based thermoelastic wave propagation in cylindrical phononic crystals with energy dissipation using a meshless collocation method
5. Hoberman-sphere-inspired lattice metamaterials with tunable negative thermal expansion
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1. Phase change enabled high bandgap tunability in graphene-reinforced phononic crystals;Mechanical Systems and Signal Processing;2024-06
2. Negative Poisson’s Ratio Lattice Structure with Chiral and Re-Entrant Properties;Applied Sciences;2023-12-08
3. Architected material with independently tunable mass, damping, and stiffness via multi-stability and kinematic amplification;The Journal of the Acoustical Society of America;2023-02-01
4. Bandgap evolution of metamaterials with continuous solid–liquid phase change;Journal of Physics D: Applied Physics;2023-01-11
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