Affiliation:
1. University of Leeds Leeds UK
Abstract
AbstractThis paper introduces a novel plasticisation model of dye diffusion which recognises the fundamentally important mechanistic roles that macromolecule glass transition and water‐induced fibre/polymer plasticisation adopt in aqueous immersion dyeing processes. In essence, the model assumes that the temperature dependent diffusivity of all classes/types of dye molecule within the water‐saturated amorphous domains present in all types of common semi‐crystalline textile fibres/polymers, is governed by the thermally regulated relaxation times of the structural rearrangements occurring within the water‐saturated, water‐swollen, water‐plasticised fibre/polymer, as articulated in terms of the constructs of polymer chain segmental mobility and available free volume.
Cited by
1 articles.
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1. Three-step kinetic model for fisetin dye diffusion into fibroin fibre;Beni-Suef University Journal of Basic and Applied Sciences;2024-07-30