Transient rheology and morphology in sheared nanolayer polymer films

Fuente: arXiv
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Main Authors: Dmochowska, Anna, Peixinho, Jorge, Sollogoub, Cyrille, Miquelard-Garnier, Guillaume
Format: Preprint
Published: 2024
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_version_ 1866917996668125184
author Dmochowska, Anna
Peixinho, Jorge
Sollogoub, Cyrille
Miquelard-Garnier, Guillaume
author_facet Dmochowska, Anna
Peixinho, Jorge
Sollogoub, Cyrille
Miquelard-Garnier, Guillaume
contents The rheology of coextruded layered films of polystyrene/poly(methyl methacrylate) (PS/PMMA) has been studied with small and large amplitude oscillations at a temperature above their glass transition. While the complex viscosity remains constant over the experimental time window for the micron-sized layered films, a decrease has been observed for the nanolayered films. The rheological behavior has then been correlated to the morphological evolution of the multilayer films: while the nanolayers dewet. Layer breakup followed by retraction and coalescence leading to a lamellar-like blend morphology succeeded by a nodular-like morphology has been evidenced in the nanolayer films, for all compositions and conditions tested. The analysis of the microscopic images of the film cross-sections also provided the droplet size distribution. The nodular morphology is achieved more rapidly when the initial layers are the thinnest at low strains, while at high strains the formation of these droplets is prevented.
format Preprint
id arxiv_https___arxiv_org_abs_2411_14591
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Transient rheology and morphology in sheared nanolayer polymer films
Dmochowska, Anna
Peixinho, Jorge
Sollogoub, Cyrille
Miquelard-Garnier, Guillaume
Soft Condensed Matter
The rheology of coextruded layered films of polystyrene/poly(methyl methacrylate) (PS/PMMA) has been studied with small and large amplitude oscillations at a temperature above their glass transition. While the complex viscosity remains constant over the experimental time window for the micron-sized layered films, a decrease has been observed for the nanolayered films. The rheological behavior has then been correlated to the morphological evolution of the multilayer films: while the nanolayers dewet. Layer breakup followed by retraction and coalescence leading to a lamellar-like blend morphology succeeded by a nodular-like morphology has been evidenced in the nanolayer films, for all compositions and conditions tested. The analysis of the microscopic images of the film cross-sections also provided the droplet size distribution. The nodular morphology is achieved more rapidly when the initial layers are the thinnest at low strains, while at high strains the formation of these droplets is prevented.
title Transient rheology and morphology in sheared nanolayer polymer films
topic Soft Condensed Matter
url https://arxiv.org/abs/2411.14591