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April 1, 2026Journal of Applied Mechanics1 citations

Stress Asymmetry in Hard Magnetic Soft Materials

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HGH. Gökçen GünerFBFrancois BarthelatJCJohn D. Clayton

Key Points

  • This work aims to explore the symmetry of Cauchy stress in hard magnetic soft materials under different magnetization formulations.
  • Utilizes continuum magnetomechanical formulations to model hard magnetic soft materials.
  • Examines changes in Cauchy stress based on referential versus current descriptions of magnetization.
  • Compares symmetric and asymmetric stress formulations in energy-minimizing configurations.
  • The referential magnetization formulation yields a symmetric Cauchy stress.
  • The current magnetization formulation generally results in an asymmetric Cauchy stress.
  • At energy-minimizing equilibrium, divergences of both stress formulations align, maintaining symmetry.

Abstract

Abstract Hard magnetic soft materials – soft polymers embedded with hard magnetic particles – are modeled using continuum magnetomechanical formulations in which the deformation and the magnetization field are the primary kinematic variables. A recent question in such formulations is whether the Cauchy stress is symmetric, which is directly related to frame invariance and angular momentum balance. This note discusses energetically equivalent formulations, related by a change of variables between referential and current descriptions of the magnetization, and shows that they generally yield different Cauchy stresses, including a change in their symmetry. Specifically, the formulation based on a referential magnetization produces a symmetric Cauchy stress, while that based on a current magnetization generally yields an asymmetric Cauchy stress. We highlight that when the internal variable (magnetization field) is at the energy-minimizing equilibrium configuration, the divergences of these stresses are the same, and both stresses are symmetric.

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Cite This Study

Güner et al. (2026) studied this question.

synapsesocial.com/papers/69cd7e935652765b073a979ahttps://doi.org/10.1115/1.4071532
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