English

Creep rupture of viscoelastic fiber bundles

Statistical Mechanics 2019-05-15 v1 Disordered Systems and Neural Networks

Abstract

We study the creep rupture of bundles of viscoelastic fibers occurring under uniaxial constant tensile loading. A novel fiber bundle model is introduced which combines the viscoelastic constitutive behaviour and the strain controlled breaking of fibers. Analytical and numerical calculations showed that above a critical external load the deformation of the system monotonically increases in time resulting in global failure at a finite time tft_f, while below the critical load the deformation tends to a constant value giving rise to an infinite lifetime. Our studies revealed that the nature of the transition between the two regimes, i.e. the behaviour of tft_f at the critical load sigmacsigma_c, strongly depends on the range of load sharing: for global load sharing tft_f has a power law divergence at σc\sigma_c with a universal exponent of 0.5, however, for local load sharing the transition becomes abrupt: at the critical load tft_f jumps to a finite value, analogous to second and first order phase transitions, respectively. The acoustic response of the bundle during creep is also studied.

Keywords

Cite

@article{arxiv.cond-mat/0103232,
  title  = {Creep rupture of viscoelastic fiber bundles},
  author = {Raul Cruz Hidalgo and Ferenc Kun and Hans. J. Herrmann},
  journal= {arXiv preprint arXiv:cond-mat/0103232},
  year   = {2019}
}

Comments

4 pages, 4 figures, APS style, submitted for publication