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Thermal aging of acrylic-urethane network: Kinetic modeling and end-of-life criteria combined with mechanical properties

Article dans une revue avec comité de lecture
Author
ISHIDA, Takato
304963 Hokkaido University [Sapporo, Japan]
GERVAIS, Matthieu
GAUDY, Alain
KITAGAKI, Ryoma
304963 Hokkaido University [Sapporo, Japan]
HAGIHARA, Hideaki
ELAKNESWARAN, Yogarajah
304963 Hokkaido University [Sapporo, Japan]
ccRICHAUD, Emmanuel
86289 Laboratoire Procédés et Ingénierie en Mécanique et Matériaux [PIMM]

URI
http://hdl.handle.net/10985/22275
DOI
10.1016/j.porgcoat.2021.106654
Date
2022
Journal
Progress in Organic Coatings

Abstract

This study addresses the multiscale analysis of acrylic urethane networks (AUN). To establish the kinetic model for predicting AUN oxidation, this study considered the pure thermal oxidation of AUN at 160, 180, and 200 °C. Chemical changes were monitored using infrared spectroscopy. These indicated the presence of an imide, presumably generated from the oxidation of CH2 at the α-position of nitrogen. On the macromolecular and macroscopic scales, oxidation was shown to induce predominant crosslinking, leading to a drop in toughness (i.e., embrittlement). The novel kinetic model of AUN thermal aging was developed from a mechanistic scheme previously established for polyamide 11, by adding some extra paths of thermolytic alkyl radical formation, oxidative Nsingle bondH bonds decomposition and coupling of aminyl radicals.

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