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February 26, 2026Mathematics and Mechanics of Solids2 citations

On universal deformations and material preferred directions in anisotropic Cauchy elasticity

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SMSeyedemad MotaghianAYArash Yavari

Key Points

  • The aim is to explore the equivalence of universal deformations in different classes of anisotropic Cauchy elasticity.
  • Examined universal deformations in anisotropic Cauchy elasticity
  • Compared the universality constraints across transversely isotropic, orthotropic, and monoclinic solids
  • Analyzed relationships between hyperelasticity and Cauchy elasticity
  • Universal deformations are identical across transversely isotropic, orthotropic, and monoclinic solids
  • Findings are consistent with established results for isotropic solids
  • Material preferred directions are independent of the strain energy function

Abstract

In this paper, we study universal deformations in anisotropic Cauchy elasticity. We show that the universality constraints of hyperelasticity and Cauchy elasticity for transversely isotropic, orthotropic, and monoclinic solids are equivalent. This implies that for each of these symmetry classes, the universal deformations and the corresponding universal material preferred directions of hyperelastic and Cauchy elastic solids are identical. This is consistent with previous findings for isotropic solids. Universal deformations and material preferred directions are therefore independent of the existence or absence of a strain energy function.

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Cite This Study

Motaghian et al. (2026) studied this question.

synapsesocial.com/papers/699fe38b95ddcd3a253e78b1https://doi.org/10.1177/10812865261420191
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