Dynamics of Coarse-grained Model of Filled Rubber Composite under Deformation

ORAL

Abstract

We presented a result of coarse-grained Molecular Dynamics simulation of filled polymer melts with Sulfur-crosslink under deformation based on the Kremer-Grest Model. Because all polymer chains are connected to one network gel, the size of simulation box under periodic boundary conditions (PBC) is set to about 33nm. We put 4 fillers, 80 polymer chains of 1024 particles, and many crosslink into the PBC box. One filler consists of 1280 particles of the C$_{1280}$ fullerene structure. A repulsive force from the center of the filler is applied to the particles of C$_{1280}$ in order to make a sphere whose diameter is about 15nm. Some patterns of distribution of the fillers are examined. The stress-strain curves estimated by applying a deformation to the system in simulations qualitatively agree with those in experiments. It is successful to show hysteresis on the S-S curve between elongation / release of the filled rubber.

Authors

  • Katsumi Hagita

    • National Defense Academy
  • Shinichi Ueno

    • Sumitomo Rubber Industries, Ltd
  • Yasumasa Bito

    • Sumitomo Rubber Industries, Ltd
  • Hiroshi Takano

    • Keio Univ.
  • Masao Doi

    • Univ. of Tokyo
  • Hiroshi Morita

    • AIST