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From the 1 of 5 linked papers with an AI index.

most citedUnveiling the key role of Interfaces in the Design of finite-sized Metamaterial Structures

3 citations · 3 across the 2 of their papers we have counts for

collaborators

5 papers

math.NA2026

Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model

Angela Madeo, Leonardo Perez, Mohammad Sarhil

The paper extends the relaxed micromorphic continuum model by adding a kinetic surface energy term to capture the inertial effects of macroscopic interfaces, allowing homogenized d…

physics.app-ph20263 cited

Unveiling the key role of Interfaces in the Design of finite-sized Metamaterial Structures

Svenja Hermann, Kévin Billon, Manuel Collet +1

This paper investigates the influence of interfaces on the performance of finite-sized mechanical metamaterial structures for vibration damping applications. The metamaterial struc…

math.NA2025

Static size-effects meet the dynamic scattering properties of finite-sized mechanical metamaterials: a relaxed micromorphic study with parameter identification via two-stage static-dynamic optimization

Mohammad Sarhil, Leonardo Andres Perez Ramirez, Max Jendrik Voss +1

Mechanical metamaterials exhibit size-effects when a few unit-cells are subjected to static loading because no clear micro-macro scale separation holds and the characteristic lengt…

physics.app-ph2025

Effective interface forces to model boundary effects in a finite-size metamaterial through the reduced relaxed micromorphic model

Plastiras Demetriou, Jendrik Voss, Angela Madeo

We use the reduced relaxed micromorphic model (RRMM) to capture the effective "bulk" dynamical response of finite size metamaterial specimens made out of a Labyrinthine unit cell.…

physics.comp-ph2025

Time domain analysis of microstructured materials through the reduced relaxed micromorphic model

Gianluca Rizzi, Angela Madeo

Microstructured materials, such as architected metamaterials and phononic crystals, exhibit complex wave propagation phenomena due to their internal structure. While full-scale num…