Dual-tuning mechanism for elastic wave transmission in a triatomic lattice with string stiffening
From MaRDI portal
Publication:2171800
DOI10.1016/j.wavemoti.2022.102951OpenAlexW4280589159MaRDI QIDQ2171800
Fang Zhang, Cang He, Kian Meng Lim, Jinhui Jiang
Publication date: 9 September 2022
Published in: Wave Motion (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.wavemoti.2022.102951
Related Items
A novel periodic beam with multilayer acoustic black holes for deep sub-wavelength vibration attenuation, Symplectic analysis for regulating wave propagation in a one-dimensional nonlinear graded metamaterial, Elastic wave propagation in weakly nonlinear media and metamaterials: a review of recent developments
Cites Work
- Multiple scales analysis of wave-wave interactions in a cubically nonlinear monoatomic chain
- Experimental study of non-linear energy pumping occurring at a single fast frequency
- Weakly nonlinear wave interactions in multi-degree of freedom periodic structures
- Wave dispersion under finite deformation
- Comparison of asymptotic and transfer matrix approaches for evaluating intensity-dependent dispersion in nonlinear photonic and phononic crystals
- Wave propagation in nonlinear and hysteretic media -- a numerical study.
- Band gaps of elastic waves in three-dimensional piezoelectric phononic crystals with initial stress
- Tunable band structures design for elastic wave transmission in tension metamaterial chain
- Actively controllable flexural wave band gaps in beam-type acoustic metamaterials with shunted piezoelectric patches
- Design of radial sonic crystal for sound attenuation from divergent sound source