Mapping of Elastic Properties of Twisting Metamaterials onto Micropolar Continuum using Static Calculations

Fuente: arXiv
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Main Authors: Lemkalli, Brahim, Kadic, Muamer, Badri, Youssef El, Guenneau, Sébastien, Bouzid, Abdenbi, Achaoui, Younes
Format: Preprint
Published: 2022
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author Lemkalli, Brahim
Kadic, Muamer
Badri, Youssef El
Guenneau, Sébastien
Bouzid, Abdenbi
Achaoui, Younes
author_facet Lemkalli, Brahim
Kadic, Muamer
Badri, Youssef El
Guenneau, Sébastien
Bouzid, Abdenbi
Achaoui, Younes
contents Recent developments in the engineering of metamaterials have brought forth a myriad of mesmerizing mechanical properties that do not exist in ordinary solids. Among these, twisting metamaterials, acoustical chirality, or Willis coupling are sample-size dependent. The purpose of this work is, first, to examine the mechanical performance of a new twisting cubic metamaterial. Then, we perform a comparative investigation of its twisting behavior using the finite element method on microstructure elements computation, an analytical model, and we compare them to Eringen micropolar continuum. Notably, the results of the three models are in good qualitative and quantitative agreements. Finally, a systematic comparison of dispersion relations was made for the continuum and for the microstructures with different sizes in unit cells as final proof of perfect mapping.
format Preprint
id arxiv_https___arxiv_org_abs_2209_15126
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Mapping of Elastic Properties of Twisting Metamaterials onto Micropolar Continuum using Static Calculations
Lemkalli, Brahim
Kadic, Muamer
Badri, Youssef El
Guenneau, Sébastien
Bouzid, Abdenbi
Achaoui, Younes
Applied Physics
Materials Science
Recent developments in the engineering of metamaterials have brought forth a myriad of mesmerizing mechanical properties that do not exist in ordinary solids. Among these, twisting metamaterials, acoustical chirality, or Willis coupling are sample-size dependent. The purpose of this work is, first, to examine the mechanical performance of a new twisting cubic metamaterial. Then, we perform a comparative investigation of its twisting behavior using the finite element method on microstructure elements computation, an analytical model, and we compare them to Eringen micropolar continuum. Notably, the results of the three models are in good qualitative and quantitative agreements. Finally, a systematic comparison of dispersion relations was made for the continuum and for the microstructures with different sizes in unit cells as final proof of perfect mapping.
title Mapping of Elastic Properties of Twisting Metamaterials onto Micropolar Continuum using Static Calculations
topic Applied Physics
Materials Science
url https://arxiv.org/abs/2209.15126