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Main Authors: Auffray, Nicolas, Mou, Guangjin, Desmorat, Boris
Format: Preprint
Published: 2026
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Online Access:https://arxiv.org/abs/2603.12019
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author Auffray, Nicolas
Mou, Guangjin
Desmorat, Boris
author_facet Auffray, Nicolas
Mou, Guangjin
Desmorat, Boris
contents An anisotropic elastic material is referred to as exotic when, under specific loadings, its mechanical response exhibits a higher degree of symmetry than that prescribed by its intrinsic material symmetry. Such materials, which may be regarded as lying, conceptually and functionally, between two distinct symmetry classes, are of significant practical relevance. They enable the tailored design of metamaterials capable of reconciling otherwise incompatible mechanical requirements; for example, achieving directional isotropy of the Young's modulus in an intrinsically anisotropic medium. This work focuses on the systematic classification of exotic structures within the framework of three-dimensional linear elasticity. An exhaustive classification is carried out, leading to the enumeration of 18 exotic structures corresponding to symmetry classes higher than orthotropy. Representative examples of exotic elastic behaviours are analysed in detail.
format Preprint
id arxiv_https___arxiv_org_abs_2603_12019
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle On Exotic Materials in 3D Linear Elasticity with High Symmetry Classes
Auffray, Nicolas
Mou, Guangjin
Desmorat, Boris
Mathematical Physics
An anisotropic elastic material is referred to as exotic when, under specific loadings, its mechanical response exhibits a higher degree of symmetry than that prescribed by its intrinsic material symmetry. Such materials, which may be regarded as lying, conceptually and functionally, between two distinct symmetry classes, are of significant practical relevance. They enable the tailored design of metamaterials capable of reconciling otherwise incompatible mechanical requirements; for example, achieving directional isotropy of the Young's modulus in an intrinsically anisotropic medium. This work focuses on the systematic classification of exotic structures within the framework of three-dimensional linear elasticity. An exhaustive classification is carried out, leading to the enumeration of 18 exotic structures corresponding to symmetry classes higher than orthotropy. Representative examples of exotic elastic behaviours are analysed in detail.
title On Exotic Materials in 3D Linear Elasticity with High Symmetry Classes
topic Mathematical Physics
url https://arxiv.org/abs/2603.12019