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Thermal ageing of a silane-crosslinked polyethylene stabilised with a thiodipropionate antioxidant

机译:用硫代哌啶抗氧化剂稳定硅烷交联聚乙烯的热老化

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摘要

The 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 and DSC under O_2 were used in a complementary way to monitor the antioxidant (AO) depletion during thermal ageing, but also to detect the polymer oxidation. In particular, at the three ageing temperatures under study, it was observed that the physical loss of AO is the main ageing mechanism and is controlled by AO evaporation. However, the contribution of the AO chemical consumption in the overall kinetics of AO depletion was also estimated. In addition, the temperature dependences of the evaporation constant and the rate constant of the chemical consumption of AO were approximated with the usual Arrhenius law in the temperature range under investigation. Although the corresponding activation energies must be considered with caution, due to the limited amount of data acquired in this study, they were found to be in good agreement with the few results available in the literature.
机译:在空气中在三种不同温度下在空气中研究硅烷交联聚乙烯的热老化,稳定用1wt%的二极管硫代硫代啶(Irganox PS802),在三种不同的温度下:87℃,110℃和130℃。以互补的方式使用O_2下的FTIR光谱和DSC来监测热老化期间的抗氧化剂(AO)耗尽,还用于检测聚合物氧化。特别地,在研究的三个衰老温度下,观察到AO的物理损失是主要老化机制,由AO蒸发控制。然而,还估计了AO耗尽整体动力学中AO化学物质的贡献。此外,蒸发常数的温度依赖性和AO的化学消耗的速度常数在调查中的温度范围内与通常的Arhenius法近似。尽管必须谨慎地考虑相应的激活能量,但由于本研究中获取的有限数量,它们被发现与文献中的少数结果吻合良好。

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