English

Modeling the Fatigue Behavior of Amorphous Polymers

Materials Science 2026-07-16 v1 Soft Condensed Matter

Abstract

Prediction of material durability is both very important and very difficult. In many cases, material durability is measured by subjecting a sample to repeating oscillatory cycles (in shear or tension-compression) until it fails in either ductile or brittle fashion. Typically, the stress amplitude is denoted S, and the number of cycles N, so the resulting dependence is known as the SN-curve. For many materials, SN curve has been shown to obey the empirical Basquin's law, N = AS^(-m), where the prefactor A was a function of the temperature, load frequency, and sample history, and the power law m was a real number, usually between 3 and 12. Here, we derive the Basquin's law using a linearized version of the Long's plasticity model and demonstrate that within this framework, m = 3. We also derive the expression for the prefactor A. Finally, we show that our theory successfully describes experimental data for three amorphous polymers, PS, PMMA, and PVC.

Cite

@article{arxiv.2607.14994,
  title  = {Modeling the Fatigue Behavior of Amorphous Polymers},
  author = {Valeriy V. Ginzburg and Oleg V. Gendelman and Alessio Zaccone},
  journal= {arXiv preprint arXiv:2607.14994},
  year   = {2026}
}

Comments

17 pages, 4 figures, 1 table