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Thermal ageing of a silane-crosslinked polyethylene stabilised with an excess of Irganox 1076Ⓡ

Article dans une revue avec comité de lecture
Auteur
XU, Anne
ccCOLIN, Xavier
86289 Laboratoire Procédés et Ingénierie en Mécanique et Matériaux [PIMM]
ccROLAND, Sébastien

URI
http://hdl.handle.net/10985/20420
DOI
10.1016/j.polymdegradstab.2021.109597
Date
2021
Journal
Polymer Degradation and Stability

Résumé

This work focuses on the thermal ageing in air of a silane-crosslinked polyethylene stabilised with an excess of phenolic antioxidant (Irganox 1076®) in the temperature range between 87°C and 130°C. In such case, it was shown in previous works that the antioxidant is present in two physical states: dissolved in the polymer matrix and exuded at the sample surface under the form of crystals. The purpose was, in particular, to investigate the role of an antioxidant excess in the stabilisation process of the polymer. On this purpose, the pure antioxidant crystals (i.e. the commercial powder) and a polymer sample stabilised with only dissolved antioxidants (i.e. in a concentration lower than the solubility threshold) were investigated at 130°C to isolate and elucidate the thermal ageing behaviour of each antioxidant phase. For all the three studied samples, quinone methide and cinnamate species were formed through the chemical consumption of antioxidants. For both stabilised samples (with an excess, or not, of antioxidants), similar behaviours were observed in term of antioxidant depletion. In particular, it was shown that although some chemical consumption was also detected, the initial antioxidant depletion was essentially due to its physical loss through evaporation. In addition, in both cases, the polymer oxidation was observed after the almost total depletion of antioxidants and without any additional oxidation induction period. The comparison of the oxidation induction periods obtained at 130°C for these two samples showed that the antioxidant excess efficiently participates to polymer stabilisation during thermal ageing, which could be due to a further solubilisation of antioxidants during thermal exposure.

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Fin d'embargo:
2022-01-01
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Documents liés

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  • Physico-chemical analysis of a silane-grafted polyethylene stabilised with an excess of Irganox 1076®. Proposal of a microstructural model 
    Article dans une revue avec comité de lecture
    XU, Anne; ccCOLIN, Xavier; ccROLAND, Sébastien (Elsevier, 2021)
    This work focuses on the physico-chemical analysis of a silane-grafted polyethylene stabilised with an excess of Irganox 1076® as phenolic antioxidant before and after surface cleaning using acetone as a polar solvent. The ...
  • Thermal ageing of a silane-crosslinked polyethylene stabilised with a thiodipropionate antioxidant 
    Article dans une revue avec comité de lecture
    XU, Anne; ccCOLIN, Xavier; ccROLAND, Sébastien (Elsevier, 2020)
    he thermal ageing of a silane-crosslinked polyethylene stabilised with 1 wt% of distearyl thiodipropionate (Irganox PS802) was studied in air at three different temperatures: 87 °C, 110 °C, and 130 °C. FTIR spectroscopy ...
  • Physico-chemical characterization of the blooming of Irganox 1076® antioxidant onto the surface of a silane-crosslinked polyethylene 
    Article dans une revue avec comité de lecture
    XU, Anne; ccROLAND, Sébastien; ccCOLIN, Xavier (Elsevier, 2020)
    This study aims at investigating the blooming of Irganox 1076® onto the surface of a silane-crosslinked polyethylene. Preliminary studies on the commercial Irganox 1076® powder enabled to identify its crystalline structure ...
  • Ageing Assessment of XLPE LV Cables for Nuclear Applications through Physico-Chemical and Electrical Measurements 
    Article dans une revue avec comité de lecture
    SURACI, Simone Vincenzo; FABIANI, Davide; XU, Anne; ccCOLIN, Xavier; ccROLAND, Sébastien (IEEE, 2020)
    This paper investigates the changes in electrical and physico-chemical properties of low-voltage power cables for nuclear application when subjected to the combined effects of gamma radiation and temperature. Electrical ...
  • A new analytical model for predicting the radio-thermal oxidation kinetics and the lifetime of electric cable insulation in nuclear power plants. application to silane cross-linked polyethylene 
    Article dans une revue avec comité de lecture
    HETTAL, Sarah; SIPILA, Konsta; JOKI, Harri; ccCOLIN, Xavier; ccROLAND, Sébastien (Elsevier, 2021)
    The radio-thermal oxidation of silane cross-linked polyethylene (Si-XLPE) was studied in air under different γ dose rates (6.0, 8.5, 77.8, and 400 Gy.h−1) at different temperatures (21, 47, and 86°C). The changes in the ...

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