Single phase 3D phononic band gap material
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Summary
For the first time, the predicted phononic band gaps via FEM simulation are experimentally verified and it is shown how the position and extension of the band gaps can be tuned by utilizing knowledge-based design.
- Type
- article
- Published
- 2017-06-19
- Cited by
- 73
- References
- 29
- Access
- Open access
- OpenAlex
- https://openalex.org/W2625242501
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:5278773
Keywords
Band gap, Materials science, Lattice (music), Finite element method, Acoustic metamaterials
References
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- In situ characterization of the deformation and failure behavior of non-stochastic porous structures processed by selective laser melting
- Vibration band-gap properties of three-dimensional Kagome lattices using the spectral element method
- Band structure of elastic waves in two dimensional systems
- On elastic waves and related phenomena in lattice materials and structures
- Classical vibrational modes in phononic lattices: theory and experiment
- Band gaps in phononic crystals: Generation mechanisms and interaction effects
- Maximizing band gaps in plate structures
- Elastic Wave Scattering by Periodic Structures of Spherical Objects: Theory and Experiment
- Phononic properties of hexagonal chiral lattices
- VIBRATIONS OF LATTICE STRUCTURES AND PHONONIC BAND GAPS
- Tunneling and dispersion in 3D phononic crystals
- The band gaps of cubic phononic crystals with different shapes of scatterers
- Acoustic band structure of periodic elastic composites.
Cited by
- Evolution of full phononic band gaps in periodic cellular structures
- Design and Additive Manufacturing of 3D Phononic Band Gap Structures Based on Gradient Based Optimization
- Optical evaluation of the wave filtering properties of graded undulated lattices
- Solid State Porous Metal Production: A Review of the Capabilities, Characteristics, and Challenges
- Pathway towards programmable wave anisotropy in cellular metamaterials
- Acoustic band gaps and elastic stiffness of PMMA cellular solids based on triply periodic minimal surfaces
- Band gap behaviour of optimal one-dimensional composite structures with an additive manufactured stiffener
- Multidimensional Phononic Bandgaps in Three-Dimensional Lattices for Additive Manufacturing
- Architected Lattices for Simultaneous Broadband Attenuation of Airborne Sound and Mechanical Vibrations in All Directions
- Optimal design of lattice structures for controllable extremal band gaps
- Network analysis predicts failure of materials and structures
- Three-dimensional resonating metamaterials for low-frequency vibration attenuation
- Computational Investigation of the Effective Mechanical Behavior for 3D Pre-Buckled Auxetic Lattices
- 3D printed architected hollow sphere foams with low-frequency phononic band gaps
- Active control on switchable waveguide of elastic wave metamaterials with the 3D printing technology
- Acoustic 1 × 2 demultiplexer based on fluid-fluid phononic crystal ring resonators
- Three-dimensional single-phase elastic metamaterial for low-frequency and broadband vibration mitigation
- Complete phononic band gaps in the 3D Yablonovite structure with spheres.
- Unraveling interactions of resonances for tunable low frequency bandgap in multiphase metamaterials under applied deformation
- Multiscale optimization of specific elastic properties and microscopic frequency band-gaps of architectured microtruss lattice materials
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