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New Advances in the Kinetic Modeling of Thermal Oxidation of Epoxy-Diamine Networks

Article dans une revue avec comité de lecture
Auteur
COLIN, Xavier
86289 Laboratoire Procédés et Ingénierie en Mécanique et Matériaux [PIMM]
DELOZANNE, Justine
300457 SAFRAN Group
MOREAU, Gurvan
300457 SAFRAN Group

URI
http://hdl.handle.net/10985/20818
DOI
10.3389/fmats.2021.720455
Date
2021
Journal
Frontiers in Materials

Résumé

This article deals with the thermal oxidation mechanisms and kinetics of epoxy-diamine (EPO-DA) networks used as composite matrices reinforced with carbon fibers in the aeronautical field. The first part of this article is devoted to a detailed presentation of the new analytical kinetic model. The so-called “closed-loop” mechanistic scheme, developed in the last 3 decades in our laboratory in order to accurately describe the thermal oxidation kinetics of saturated hydrocarbon polymers, is recalled. Its main characteristics are also briefly recalled. Then, the system of differential equations derived from this oxidation mechanism is analytically solved without resorting to the usual simplifying assumptions that seriously degrade the reliability of all kinetic models. On the contrary, the generalization of the proportionalities observed between the steady concentrations of the different reactive species (i.e., hydroperoxides and alkyl and peroxy radicals) to the entire course of thermal oxidation gives a series of much sounder equations. From this basis, the kinetic model is completed by considering new structure/property relationships in order to predict the consequences of thermal oxidation on the thermomechanical properties, in particular on the glass transition temperature (Tg). To reach this second objective, the two main mechanisms responsible for the alteration of the macromolecular network structure are recalled: chain scissions and crosslinking. Like any other chemical species, their kinetics are directly expressed from the oxidation mechanistic scheme using the classical concepts of chemical kinetics. The second part of this article is devoted to the checking of the kinetic model reliability. It is shown that this latter accurately simulates the experimental curves of carbonyl build-up and Tg decrease versus time of exposure determined in our laboratory for three EPO-DA networks under study, exposed in a wide variety of thermal oxidative environments. The values determined by inverse solving method for the different model parameters are discussed and their temperature dependence are elucidated. Finally, an end-of-life criterion is proposed for predicting the lifetime of EPO-DA networks involving a predominant chain scission process.

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Nom:
PIMM_FMATS_COLIN_2021_OPENACCESS
Taille:
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Documents liés

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  • A new analytical model for predicting the thermal oxidation kinetics of composite organic m atrices. Application to diamine cross-linked epoxy 
    Article dans une revue avec comité de lecture
    COLIN, Xavier; ESSATBI, Fatima; DELOZANNE, Justine; MOREAU, Gurvan (Elsevier, 2021)
    The system of differential equations derived from the so-called “closed-loop” mechanistic scheme was solved analytically by applying realistic proportionality assumptions between the different concentrations of reactive ...
  • Towards a general kinetic model for the thermal oxidation of epoxy-diamine networks. Effect of the molecular mobility around the glass transition temperature 
    Article dans une revue avec comité de lecture
    COLIN, Xavier; ESSATBI, Fatima; DELOZANNE, Justine; MOREAU, Gurvan (Elsevier, 2020)
    The kinetic model previously established for describing the thermal oxidation of polymethylenic substrates has been successfully generalized to a series of six epoxy-diamine networks (EPO-DA) characterized by very different ...
  • Advances in pantographic structures: design, manufacturing, models, experiments and image analyses 
    Article dans une revue avec comité de lecture
    DELL’ISOLA, Francesco; SEPPECHER, Pierre; SPAGNUOLO, Mario; BARCHIESI, Emilio; HILD, François; LEKSZYCKI, Tomasz; GIORGIO, Ivan; PLACIDI, Luca; ANDREAUS, Ugo; CUOMO, Massimo; EUGSTER, Simon R.; PFAFF, Aron; HOSCHKE, Klaus; LANGKEMPER, Ralph; TURCO, Emilio; SARIKAYA, Rizacan; MISRA, Aviral; DE ANGELO, Michele; D’ANNIBALE, Francesco; BOUTERF, Amine; PINELLI, Xavier; MISRA, Anil; DESMORAT, Boris; PAWLIKOWSKI, Marek; DUPUY, Corinne; SCERRATO, Daria; PEYRE, Patrice; LAUDATO, Marco; MANZARI, Luca; GÖRANSSON, Peter; HESCH, Christian; HESCH, Sofia; FRANCIOSI, Patrick; DIRRENBERGER, Justin; MAURIN, Florian; VANGELATOS, Zacharias; GRIGOROPOULOS, Costas; MELISSINAKI, Vasileia; FARSARI, Maria; MULLER, Wolfgang; ABALI, Bilen Emek; LIEBOLD, Christian; GANZOSCH, Gregor; HARRISON, Philip; DROBNICKI, Rafał; IGUMNOV, Leonid; ALZAHRANI, Faris; HAYAT, Tasawar (Springer Verlag, 2019)
    In the last decade, the exotic properties of pantographic metamaterials have been investigated and different mathematical models (both discrete or continuous) have been introduced. In a previous publication, a large part ...
  • Conséquences de l’oxydation sur l’absorption d’eau dans les matrices PEEK et PEI 
    Article dans une revue avec comité de lecture
    COURVOISIER, Emilie; BICABA, Yoann; COLIN, Xavier (EDP Sciences, 2020)
    Les conséquences du vieillissement thermique sur les propriétés de transport d’eau (i.e. la solubilité et la diffusivité) dans les matrices PEEK et PEI ont été étudiées dans cinq atmosphères humides : 10, 30, 50, 70 et ...
  • Vieillissement thermique d’un jonc composite carbone/époxy 
    Article dans une revue avec comité de lecture
    SERROR, Maéva; COLIN, Xavier; LARCHE, Jean-François (Lavoisier, 2013)
    Le vieillissement thermique d’un jonc composite carbone/époxy a été étudié dans l’air entre 160 et 220 °C par tomographie X, microscopie optique et flexion trois points. La thermo-oxydation de la matrice affecte une couche ...

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