A complete methodology, based on a two-scale asymptotic approach, that enables the homogenisation of elastic lattices at non-zero frequencies is developed. Elastic lattices are distinguished from scalar lattices in that two or more types of coupled waves exist, even at low frequencies. Such a theory enables the determination of effective material properties at both low and high frequencies. The theoretical framework is developed for the propagation of waves through lattices of arbitrary geometry and dimension. The asymptotic approach provides a method through which the dispersive properties of lattices at frequencies near standing waves can be described; the theory accurately describes both the dispersion curves and the response of the latt...
International audienceWe present an accurate methodology for representing the physics of waves, in p...
Propagation of elastic waves through discrete and continuous periodically heterogeneous media is stu...
International audienceWe present an accurate methodology for representing the physics of waves, in p...
A complete methodology, based on a two-scale asymptotic approach, that enables the ho-mogenisation o...
AbstractWe address an important issue of dynamic homogenisation in vector elasticity for a doubly pe...
An asymptotic scheme is generated that captures the motion of waves within discrete hexagonal and ho...
A novel characterisation of dispersive waves in a vector elastic lattice is presented in the context...
AbstractThe equivalent in-plane properties for hexagonal and re-entrant (auxetic) lattices are inves...
High frequency homogenisation is applied to develop asymptotics for waves propagating along interfac...
In the context of acoustics, single polarization electromagnetism and elastic plates we consider mic...
A novel characterisation of dispersive waves in a vector elastic lattice is presented in the context...
The properties of mechanical meta-materials in the form of a periodic lattice have drawnthe attentio...
The properties of mechanical meta-materials in the form of a periodic lattice have drawnthe attentio...
The properties of mechanical meta-materials in the form of a periodic lattice have drawnthe attentio...
An asymptotic scheme is generated that captures the motion of waves within discrete, semi-discrete a...
International audienceWe present an accurate methodology for representing the physics of waves, in p...
Propagation of elastic waves through discrete and continuous periodically heterogeneous media is stu...
International audienceWe present an accurate methodology for representing the physics of waves, in p...
A complete methodology, based on a two-scale asymptotic approach, that enables the ho-mogenisation o...
AbstractWe address an important issue of dynamic homogenisation in vector elasticity for a doubly pe...
An asymptotic scheme is generated that captures the motion of waves within discrete hexagonal and ho...
A novel characterisation of dispersive waves in a vector elastic lattice is presented in the context...
AbstractThe equivalent in-plane properties for hexagonal and re-entrant (auxetic) lattices are inves...
High frequency homogenisation is applied to develop asymptotics for waves propagating along interfac...
In the context of acoustics, single polarization electromagnetism and elastic plates we consider mic...
A novel characterisation of dispersive waves in a vector elastic lattice is presented in the context...
The properties of mechanical meta-materials in the form of a periodic lattice have drawnthe attentio...
The properties of mechanical meta-materials in the form of a periodic lattice have drawnthe attentio...
The properties of mechanical meta-materials in the form of a periodic lattice have drawnthe attentio...
An asymptotic scheme is generated that captures the motion of waves within discrete, semi-discrete a...
International audienceWe present an accurate methodology for representing the physics of waves, in p...
Propagation of elastic waves through discrete and continuous periodically heterogeneous media is stu...
International audienceWe present an accurate methodology for representing the physics of waves, in p...