English

Large-scale simulation of adhesion dynamics for end-graphed polymers

Materials Science 2016-08-31 v1

Abstract

The adhesion between a polymer melt and substrate is studied in the presence of chemically attached chains on the substrate surface. Extensive molecular dynamics simulations have been carried out to study the effect of temperature, tethered chain areal density (Σ\Sigma), tethered chain length (NtN_{t}), chain bending energy (kθk_{\theta}) and tensile pull velocity (vv) on the adhesive failure mechanisms of pullout and/or scission of the tethered chains. We observe a crossover from pure chain pullout to chain scission as NtN_{t} is increased. Below the glass transition, the value of NtN_{t} for which this crossover begins approaches the bulk entanglement length NeN_{e}. For the values of NtN_{t} and Σ\Sigma used here, no crossover to crazing is observed.

Keywords

Cite

@article{arxiv.cond-mat/0108258,
  title  = {Large-scale simulation of adhesion dynamics for end-graphed polymers},
  author = {Scott W. Sides and Gary S. Grest and Mark J. Stevens},
  journal= {arXiv preprint arXiv:cond-mat/0108258},
  year   = {2016}
}

Comments

To be published in Macromolecules. 18 pages of text and 12 GIF figures

R2 v1 2026-07-22T10:26:12.173Z