Chiral and non-centrosymmetric effects on the nonlinear wave propagation characteristics of architectured cellular materials
From MaRDI portal
Publication:5867647
DOI10.1080/17455030.2020.1834169zbMath1501.74046OpenAlexW3093425707MaRDI QIDQ5867647
Jean-François Ganghoffer, N. Karathanasopoulos
Publication date: 14 September 2022
Published in: Waves in Random and Complex Media (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1080/17455030.2020.1834169
group velocityLindstedt-Poincaré methodmetamaterialbandgapfrequency correctionhexachiral lattice designhigher-order inner element kinematics
Cites Work
- Phononic properties of hexagonal chiral lattices
- Modified Lindstedt-Poincaré methods for some strongly nonlinear oscillations. II: A new transformation
- Noncentrosymmetry in micropolar elasticity
- The effect of pre-stress on the vibration and stability of elastic plates
- Influence of first to second gradient coupling energy terms on the wave propagation of three-dimensional non-centrosymmetric architectured materials
- Weakly nonlinear wave interactions in multi-degree of freedom periodic structures
- Parametric design of the band structure for lattice materials
- Nonlinear normal modes of structural systems via asymptotic approach
- Comparison of two Lindstedt–Poincaré-type perturbation methods
- Effective wave propagation in a prestressed nonlinear elastic composite bar
- Large displacement analysis of three-dimensional beam structures
- Amplification of Nonlinear Strain Waves in Solids
- An Isogeometric Approach to Beam Structures
- THEORETICAL CHARACTERISTICS OF THE VIBRATION OF SANDWICH PLATES WITH IN-PLANE NEGATIVE POISSON'S RATIO VALUES
- Unnamed Item
- Unnamed Item