A Case Study of Polyetheretherketone (II): Playing with Oxygen Concentration and Modeling Thermal Decomposition of a High-Performance Material

Kinetic decomposition models for the thermal decomposition of a high-performance polymeric material (polyetheretherketone, PEEK) were determined from specific techniques. Experimental data from thermogravimetric analysis (TGA) and previously elucidated decomposition mechanisms were combined with a n...

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Main Authors: Aditya Ramgobin, Gaëlle Fontaine, Serge Bourbigot
Format: Article
Language:English
Published: MDPI AG 2020-07-01
Series:Polymers
Subjects:
Online Access:https://www.mdpi.com/2073-4360/12/7/1577
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spelling doaj-2a09a6783a1145af9683bad75c825f522020-11-25T02:37:15ZengMDPI AGPolymers2073-43602020-07-01121577157710.3390/polym12071577A Case Study of Polyetheretherketone (II): Playing with Oxygen Concentration and Modeling Thermal Decomposition of a High-Performance MaterialAditya Ramgobin0Gaëlle Fontaine1Serge Bourbigot2CNRS, INRAE, Centrale Lille, UMR 8207—UMET—Unité Matériaux et Transformations, University Lille, F-59000 Lille, FranceCNRS, INRAE, Centrale Lille, UMR 8207—UMET—Unité Matériaux et Transformations, University Lille, F-59000 Lille, FranceCNRS, INRAE, Centrale Lille, UMR 8207—UMET—Unité Matériaux et Transformations, University Lille, F-59000 Lille, FranceKinetic decomposition models for the thermal decomposition of a high-performance polymeric material (polyetheretherketone, PEEK) were determined from specific techniques. Experimental data from thermogravimetric analysis (TGA) and previously elucidated decomposition mechanisms were combined with a numerical simulating tool to establish a comprehensive kinetic model for the decomposition of PEEK under three atmospheres: nitrogen, 2% oxygen, and synthetic air. Multistepped kinetic models with subsequent and competitive reactions were established by taking into consideration the different types of reactions that may occur during the thermal decomposition of the material (chain scission, thermo-oxidation, char formation). The decomposition products and decomposition mechanism of PEEK which were established in our previous report allowed for the elucidation of the kinetic decomposition models. A three-stepped kinetic thermal decomposition pathway was a good fit to model the thermal decomposition of PEEK under nitrogen. The kinetic model involved an autocatalytic type of reaction followed by competitive and successive nth order reactions. Such types of models were set up for the evaluation of the kinetics of the thermal decomposition of PEEK under 2% oxygen and in air, leading to models with satisfactory fidelity.https://www.mdpi.com/2073-4360/12/7/1577kinetic analysispolymer decompositionhigh performance polymerssimulation
collection DOAJ
language English
format Article
sources DOAJ
author Aditya Ramgobin
Gaëlle Fontaine
Serge Bourbigot
spellingShingle Aditya Ramgobin
Gaëlle Fontaine
Serge Bourbigot
A Case Study of Polyetheretherketone (II): Playing with Oxygen Concentration and Modeling Thermal Decomposition of a High-Performance Material
Polymers
kinetic analysis
polymer decomposition
high performance polymers
simulation
author_facet Aditya Ramgobin
Gaëlle Fontaine
Serge Bourbigot
author_sort Aditya Ramgobin
title A Case Study of Polyetheretherketone (II): Playing with Oxygen Concentration and Modeling Thermal Decomposition of a High-Performance Material
title_short A Case Study of Polyetheretherketone (II): Playing with Oxygen Concentration and Modeling Thermal Decomposition of a High-Performance Material
title_full A Case Study of Polyetheretherketone (II): Playing with Oxygen Concentration and Modeling Thermal Decomposition of a High-Performance Material
title_fullStr A Case Study of Polyetheretherketone (II): Playing with Oxygen Concentration and Modeling Thermal Decomposition of a High-Performance Material
title_full_unstemmed A Case Study of Polyetheretherketone (II): Playing with Oxygen Concentration and Modeling Thermal Decomposition of a High-Performance Material
title_sort case study of polyetheretherketone (ii): playing with oxygen concentration and modeling thermal decomposition of a high-performance material
publisher MDPI AG
series Polymers
issn 2073-4360
publishDate 2020-07-01
description Kinetic decomposition models for the thermal decomposition of a high-performance polymeric material (polyetheretherketone, PEEK) were determined from specific techniques. Experimental data from thermogravimetric analysis (TGA) and previously elucidated decomposition mechanisms were combined with a numerical simulating tool to establish a comprehensive kinetic model for the decomposition of PEEK under three atmospheres: nitrogen, 2% oxygen, and synthetic air. Multistepped kinetic models with subsequent and competitive reactions were established by taking into consideration the different types of reactions that may occur during the thermal decomposition of the material (chain scission, thermo-oxidation, char formation). The decomposition products and decomposition mechanism of PEEK which were established in our previous report allowed for the elucidation of the kinetic decomposition models. A three-stepped kinetic thermal decomposition pathway was a good fit to model the thermal decomposition of PEEK under nitrogen. The kinetic model involved an autocatalytic type of reaction followed by competitive and successive nth order reactions. Such types of models were set up for the evaluation of the kinetics of the thermal decomposition of PEEK under 2% oxygen and in air, leading to models with satisfactory fidelity.
topic kinetic analysis
polymer decomposition
high performance polymers
simulation
url https://www.mdpi.com/2073-4360/12/7/1577
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