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Main Authors: Ariza, M. P., Conti, S., Ortiz, M.
Format: Preprint
Published: 2024
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Online Access:https://arxiv.org/abs/2403.18854
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author Ariza, M. P.
Conti, S.
Ortiz, M.
author_facet Ariza, M. P.
Conti, S.
Ortiz, M.
contents When used in bulk applications, mechanical metamaterials set forth a multiscale problem with many orders of magnitude in scale separation between the micro and macro scales. However, mechanical metamaterials fall outside conventional homogenization theory on account of the flexural, or bending, response of their members, including torsion. We show that homogenization theory, based on calculus of variations and notions of Gamma-convergence, can be extended to account for bending. The resulting homogenized metamaterials exhibit intrinsic generalized elasticity in the continuum limit. We illustrate these properties in specific examples including two-dimensional honeycomb and three-dimensional octet-truss metamaterials.
format Preprint
id arxiv_https___arxiv_org_abs_2403_18854
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Homogenization and continuum limit of mechanical metamaterials
Ariza, M. P.
Conti, S.
Ortiz, M.
Analysis of PDEs
Mathematical Physics
When used in bulk applications, mechanical metamaterials set forth a multiscale problem with many orders of magnitude in scale separation between the micro and macro scales. However, mechanical metamaterials fall outside conventional homogenization theory on account of the flexural, or bending, response of their members, including torsion. We show that homogenization theory, based on calculus of variations and notions of Gamma-convergence, can be extended to account for bending. The resulting homogenized metamaterials exhibit intrinsic generalized elasticity in the continuum limit. We illustrate these properties in specific examples including two-dimensional honeycomb and three-dimensional octet-truss metamaterials.
title Homogenization and continuum limit of mechanical metamaterials
topic Analysis of PDEs
Mathematical Physics
url https://arxiv.org/abs/2403.18854