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20162021
most citedFree and forced wave propagation in beam lattice metamaterials with viscoelastic resonators

5 citations · 5 across the 5 of their papers we have counts for

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6 papers · 1 filter

physics.app-ph2020

Chiral two-dimensional periodic blocky materials with elastic interfaces: auxetic and acoustic properties

Andrea Bacigalupo, Luigi Gambarotta

Two novel chiral block lattice topologies are here conceived having interesting auxetic and acoustic behavior. The architectured chiral material is made up of a periodic repetition…

physics.app-ph2020

Identification of non-local continua for lattice-like materials

Andrea Bacigalupo, Luigi Gambarotta

The paper is focused on the dynamic homogenization of lattice-like materials with lumped mass at the nodes to obtain energetically consistent models providing accurate descriptions…

physics.app-ph2019★ 5 cited

Free and forced wave propagation in beam lattice metamaterials with viscoelastic resonators

F Vadalà, A Bacigalupo, M Lepidi +1

Beam lattice materials are characterized by a periodic microstructure realizing a geometrically regular pattern of elementary cells. In these microstructured materials, the dispers…

physics.app-ph2019

A novel layered topology of auxetic materials based on the tetrachiral honeycomb microstructure

Ferdinando Auricchio, Andrea Bacigalupo, Luigi Gambarotta +3

Microstructured honeycomb materials may exhibit exotic, extreme and tailorable mechanical properties, suited for innovative technological applications in a variety of modern engine…

physics.app-ph2018

Acoustic waveguide filters made up of rigid stacked materials with elastic joints

Andrea Bacigalupo, Luigi Gambarotta, Marco Lepidi +1

The acoustic dispersion properties of monodimensional waveguide filters can be assessed by means of the simple prototypical mechanical system made of an infinite stack of periodic…

physics.app-ph2018

Bloch wave filtering in tetrachiral materials via mechanical tuning

Francesca Vadalà, Andrea Bacigalupo, Marco Lepidi +1

The periodic cellular topology characterizing the microscale structure of a heterogeneous material may allow the finest functional customization of its acoustic dispersion properti…