Lattice materials possessing a spatially periodic microstructure are suitable in weight sensitive multifunctional structural applications such as sandwich panels. They not only possess high specific stiffness but also provide opportunities to tailor acoustic and thermal properties through designing their unit cell topology. This paper seeks to understand their mechanical response under static and dynamic loads from a structural mechanics perspective combining Bloch wave theory with Finite Element Method (FEM). Bringing together results from earlier works, it is shown that three eigenvalue problems, containing the frequency and wave vector as the unknowns, can be used to analyze bulk and surface wave phenomena. The application of eigenvalue ...
International audienceThe elastic wave propagation phenomena in two-dimensional periodic beam lattic...
International audienceThe elastic wave propagation phenomena in two-dimensional periodic beam lattic...
In this paper, modified two-dimensional periodic lattice materials with local resonance phononic ban...
This paper proposes two significant developments of the Wittrick–Williams (W–W) algorithm for an exa...
The present work is devoted to a theoretical analysis and numerical modeling of elastic wave propaga...
This paper proposes the methodology to carry out the analysis of Bloch wave propagation in an array ...
The present work is devoted to a theoretical analysis and numerical modeling of elastic wave propaga...
The free propagation of elastic waves through periodic microstructured materials can be studied by t...
The free propagation of elastic waves through periodic microstructured materials can be studied by ...
The present work shows many aspects concerning the use of the wave methodology for the response com...
The present work shows many aspects concerning the use of the wave methodology for the response com...
The wave propagation behavior for one-dimensional rods, beams, and two-dimensional periodic lattice ...
The wave propagation behavior for one-dimensional rods, beams, and two-dimensional periodic lattice ...
The periodic cellular topology characterizing the microscale structure of a heterogeneous material m...
Lattice materials possess a spatially repeating porous microstructure or unit cell. Their usefulness...
International audienceThe elastic wave propagation phenomena in two-dimensional periodic beam lattic...
International audienceThe elastic wave propagation phenomena in two-dimensional periodic beam lattic...
In this paper, modified two-dimensional periodic lattice materials with local resonance phononic ban...
This paper proposes two significant developments of the Wittrick–Williams (W–W) algorithm for an exa...
The present work is devoted to a theoretical analysis and numerical modeling of elastic wave propaga...
This paper proposes the methodology to carry out the analysis of Bloch wave propagation in an array ...
The present work is devoted to a theoretical analysis and numerical modeling of elastic wave propaga...
The free propagation of elastic waves through periodic microstructured materials can be studied by t...
The free propagation of elastic waves through periodic microstructured materials can be studied by ...
The present work shows many aspects concerning the use of the wave methodology for the response com...
The present work shows many aspects concerning the use of the wave methodology for the response com...
The wave propagation behavior for one-dimensional rods, beams, and two-dimensional periodic lattice ...
The wave propagation behavior for one-dimensional rods, beams, and two-dimensional periodic lattice ...
The periodic cellular topology characterizing the microscale structure of a heterogeneous material m...
Lattice materials possess a spatially repeating porous microstructure or unit cell. Their usefulness...
International audienceThe elastic wave propagation phenomena in two-dimensional periodic beam lattic...
International audienceThe elastic wave propagation phenomena in two-dimensional periodic beam lattic...
In this paper, modified two-dimensional periodic lattice materials with local resonance phononic ban...