Related Experiment Video
Updated: Mar 22, 2026

Characterizing Dissipative Elastic Metamaterials Produced by Additive Manufacturing
Published on: June 28, 2024
Importance of non-affine viscoelastic response in disordered fibre networks
L G Rizzi1, S Auer2, D A Head3
1Departamento de Física, Universidade Federal de Viçosa, 36570-900, Viçosa, Brazil and School of Chemistry, University of Leeds, LS2 9JT, Leeds, UK.
Abstract:
Disordered fibre networks are ubiquitous in nature and have a wide range of industrial applications as novel biomaterials. Predicting their viscoelastic response is straightforward for affine deformations that are uniform over all length scales, but when affinity fails, as has been observed experimentally, modelling becomes challenging. Here we present a numerical methodology, related to an existing framework for amorphous packings, to predict the steady-state viscoelastic spectra and degree of affinity for disordered fibre networks driven at arbitrary frequencies. Applying this method to a peptide gel model reveals a monotonic increase of the shear modulus as the soft, non-affine normal modes are successively suppressed as the driving frequency increases. In addition to being dominated by fibril bending, these low frequency network modes are also shown to be delocalised. The presented methodology provides insights into the importance of non-affinity in the viscoelastic response of peptide gels, and is easily extendible to all types of fibre networks.
Related Concept Videos
Relation between Poisson's ratio, Modulus of Elasticity and Modulus of Rigidity
Plastic Behavior
Elastic Strain Energy for Shearing Stresses
Members Made of Elastoplastic Material
As the bending moment...
Hooke's Law
Elastic Strain Energy for Normal Stresses
If...

