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Hydrolytic kinetic model predicting embrittlement in thermoplastic elastomers

Article dans une revue avec comité de lecture
Auteur
BARDIN, Antoine
LE GAC, Pierre Yves
CÉRANTOLA, Stéphane
SIMON, Gaëlle
BINDI, Hervé
182378 Thales
ccFAYOLLE, Bruno
86289 Laboratoire Procédés et Ingénierie en Mécanique et Matériaux [PIMM]

URI
http://hdl.handle.net/10985/18357
DOI
10.1016/j.polymdegradstab.2019.109002
Date
2020
Journal
Polymer Degradation and Stability

Résumé

A hydrolytic kinetic model predicting chains scissions of a polyurethane elastomer (TPU) containing an anti-hydrolysis agent (stabilization via carbodiimide) was developed. This model is based on four components: uncatalysed hydrolysis, acid-catalysed hydrolysis, carboxylic acid dissociation and competitive carbodiimide-based deactivation of acid. Protons were considered as the key catalyst responsible for the hydrolysis. Model parameters were determined by fitting experimental data measured on unstabilized and stabilized TPUs, aged in immersion from 40 to 90 °C. Scission kinetics were predicted for immersion and 50% relative humidity conditions, from 10 to 100 °C. Structure-failure property relationships were also investigated, between molar mass and elongation at break. A master curve was established for elongation at break with molar mass, including both TPUs at four ageing temperatures. By combining predictions for scission kinetics with the molar mass-elongation at break master curve and an embrittlement molar mass as the end-of-life criterion, non-Arrhenian lifetime predictions are proposed for all exposure conditions considered.

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Documents liés

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  • Correlation between crystallization and mechanical stress revealed by chain scission of segmented amide copolymer 
    Article dans une revue avec comité de lecture
    BARDIN, Antoine; LE GAC, Pierre-Yves; ALBOUY, Pierre-Antoine; BINDI, Hervé; ccFAYOLLE, Bruno (2022-03-25)
    By tuning hydrolysis duration of a segmented ether-amide copolymer (PEBA), a range of specimens presenting various macromolecular structures has been produced. Knowing that scissions occur predominantly at the bond between ...
  • Relationships between molar mass and fracture properties of segmented urethane and amide copolymers modified by chemical degradation 
    Article dans une revue avec comité de lecture
    BARDIN, Antoine; LE GAC, Pierre‐Yves; BINDI, Hervé; ccFAYOLLE, Bruno (Wiley, 2020)
    This publication highlights the structure–property relationships in several thermoplastic elastomers (TPEs): one poly(ether-block-amide) and two thermoplastic polyurethane elastomers with ester and ether soft blocks. ...
  • Relationship between macromolecular network and fatigue properties of unfilled polychloroprene rubber 
    Article dans une revue avec comité de lecture
    LE GAC, Pierre-Yves; ALBOUY, Pierre-Antoine; VERDU, Jacques; ccFAYOLLE, Bruno (Elsevier, 2021)
    Fatigue life of unfilled polychloroprene rubber is characterized in fully relaxing (R = 0) and non-relaxing conditions (R = 0.2) for more than 15 network structures. Network changes are induced by thermal oxidation ageing ...
  • Oxidation of unvulcanized, unstabilized polychloroprene: A kinetic study 
    Article dans une revue avec comité de lecture
    LE GAC, Pierre Yves; ROUX, Gérard; VERDU, Jacques; DAVIES, Peter; ccFAYOLLE, Bruno (Elsevier, 2014)
    Thermal oxidation in air at atmospheric pressure, in the 80-140 °C temperature range and in oxygen at 100 °C in the 0.02-3 MPa pressure range, of unvulcanized, unstabilized, unfilled polychloroprene (CR) has been characterized ...
  • Impact of fillers (short glass fibers and rubber) on the hydrolysis-induced embrittlement of polyamide 6.6 
    Article dans une revue avec comité de lecture
    LE GAC, Pierre Yves; ccFAYOLLE, Bruno (Elsevier, 2018)
    This study deals with the durability of composites based on polyamide 6.6 (PA6.6) in a humid environment, and more especially, with the loss of fracture properties. It is known that PA6.6 undergoes plasticization in the ...

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