暴露于持久性有机污染物的环氧树脂/石英复合材料的实验表征

IF 6.3 2区 化学 Q1 POLYMER SCIENCE
Giacomo Buccella , Andrea Basso Peressut , Luigi Brambilla , Andrea Villa , Matteo Di Virgilio , Luca Barbieri , Daniele Palladini , Giovanni D’Avanzo , Simone Venturini , Giovanni Dotelli
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引用次数: 0

摘要

电力系统部件中的聚合绝缘降解导致的故障很难预测。局部放电(PD)是导致聚合绝缘体老化的主要现象之一。因此,更好地了解局部放电引起的老化过程对于开发有效的模型以预测老化、优化材料和提出诊断指标至关重要。在此,我们通过傅立叶变换红外光谱(FTIR)对暴露于 PDs 的复合材料进行了实验表征。该材料由固化环氧树脂与二氧化硅(石英)混合而成。使用针板配置进行了表面放电老化试验,试验考虑了两种气氛(空气和二氧化碳)和四种暴露时间(6、24、72 和 120 小时)。为了帮助解释光谱数据,我们加入了一系列模拟结果。观察到的主要影响是样品表面环氧树脂的侵蚀和脱落,与处理时间和离针头的距离成正比。伴随着侵蚀,在暴露于空气等离子体的表面上检测到了新的化学物质(可能是草酸盐)。这些化学物质很可能是在等离子体的作用下形成的,然后随着时间的推移被清除。另一方面,在二氧化碳环境中老化的样品只受到环氧树脂的侵蚀。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental characterization of epoxy/quartz composite material exposed to PDs

Failures due to the degradation of polymeric insulation in components of electrical power systems are difficult to predict. Partial discharges (PDs) are one of the main phenomena that contribute to polymeric insulators’ aging. Therefore, a better understanding of the aging process due to PDs is crucial to develop effective models that predict degradation, optimize materials and propose diagnostic indicators. Here we present an experimental characterization, via Fourier-transform Infrared spectroscopy (FTIR), of a composite material exposed to PDs. The material consisted of cured epoxy resin mixed with silica (quartz). Aging tests with surface discharges, using a needle-plate configuration, were conducted considering two atmospheres (air and CO2) and four exposition times (6, 24, 72 and 120 hours). To aid the interpretation of spectroscopic data, we included a series of simulation results. The main effect observed was the erosion and removal of epoxy resin from the surface of the samples, proportionally to treatment time and distance from the needle. Along with erosion, new chemical species (possibly oxalate salts) were detected on the surface exposed to air-plasma. These species were likely formed and then removed due to plasma activity over time. On the other hand, samples aged in CO2 atmosphere underwent only epoxy resin erosion.

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来源期刊
Polymer Degradation and Stability
Polymer Degradation and Stability 化学-高分子科学
CiteScore
10.10
自引率
10.20%
发文量
325
审稿时长
23 days
期刊介绍: Polymer Degradation and Stability deals with the degradation reactions and their control which are a major preoccupation of practitioners of the many and diverse aspects of modern polymer technology. Deteriorative reactions occur during processing, when polymers are subjected to heat, oxygen and mechanical stress, and during the useful life of the materials when oxygen and sunlight are the most important degradative agencies. In more specialised applications, degradation may be induced by high energy radiation, ozone, atmospheric pollutants, mechanical stress, biological action, hydrolysis and many other influences. The mechanisms of these reactions and stabilisation processes must be understood if the technology and application of polymers are to continue to advance. The reporting of investigations of this kind is therefore a major function of this journal. However there are also new developments in polymer technology in which degradation processes find positive applications. For example, photodegradable plastics are now available, the recycling of polymeric products will become increasingly important, degradation and combustion studies are involved in the definition of the fire hazards which are associated with polymeric materials and the microelectronics industry is vitally dependent upon polymer degradation in the manufacture of its circuitry. Polymer properties may also be improved by processes like curing and grafting, the chemistry of which can be closely related to that which causes physical deterioration in other circumstances.
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