arXiv · 2508.01526
Primitive chain network simulations of the creep of entangled polymers
Abstract
Although the behavior of entangled polymers in startup shear flows with constant shear rates has been thoroughly investigated, the response under creep has not been frequently considered. In this study, primitive chain network simulations, based on a multi-chain sliplink model, are modified so as to describe creep experiments. Creep simulations are compared to a literature dataset of an entangled polybutadiene solution, and qualitative agreement is found in the nonlinear range, i.e., under large stresses. Simulations allow one to extract details of the transient molecular motion, and results suggest that the deformation-induced disentanglement is relatively mild in the stress-controlled mode as compared to the rate-controlled one, because coherent molecular tumbling at the start of flow is disrupted.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Yuichi Masubuchi, Giovanni Ianniruberto, Giuseppe Marrucci. 2025-08-03. Primitive chain network simulations of the creep of entangled polymers. https://doi.org/10.1007/s44347-026-00040-0
Cite the original work for its findings. Save a collection to share your selection of sources.