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Durability of crosslinked polydimethylsyloxanes: the case of composite insulators

机译:交联聚二甲基氧杂烷的耐久性:复合绝缘子的情况

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摘要

Most applications of silicones are linked to their hydrophobic properties and (or) their high resistance to ageing (e.g. thermal ageing and photoageing). However, when placed in extreme environments, these materials can fail as in the case of epoxy/fiber glass composite powerlines insulators, where crosslinked polymethylsyloxanes (PDMSs) are used as the protective envelope (housing) of the insulator. We report on the behavior of both pureoncrosslinked PDMSs and typical formulations used in industrial insulators, i.e. containing peroxide crosslinked PDMS, alumina trioxide hydrated (ATH) and silica. Special attention is paid on both (i) the sources of potential degradation and (ii) the best analytical methods that can be applied to the study of very complex formulations. (i) Aside from conventional types of ageing such as photo-ageing and thermal, hydrolytic, and service life ageings, treatments with acidic vapors, plasma and ozone possibly generating species from the reaction of a high electric field with air were also performed, which allowed to accelerate electrical and out-door ageings and to obtain differently aged materials. (ii) Aside from conventional analytical methods of polymer degradation such as FTIR/ATR spectroscopy and SEC, TG, hardness measurements, more specific methods like photo/DSC, TG/IR, thermoporosimetry, resistivity and density measurements were also performed to characterize the chemical and physical evolutions of polymer materials. In particular, it was found that treatment with nitric acid vapor has detrimental effects on the properties of both fire retardants (e.g. ATH) and PDMSs, affecting the hardness and resistivity of the formulated material.
机译:有机硅的大多数应用都与它们的疏水性和(或)它们的高抗老化性(例如热老化和光老化)有关。但是,当放置在极端环境中时,这些材料可能会失败,就像环氧/纤维玻璃复合电力线绝缘子一样,在这种情况下,交联的聚甲基硅氧烷(PDMS)被用作绝缘子的保护壳(外壳)。我们报告了纯/非交联的PDMS的行为以及工业绝缘子中使用的典型配方的行为,即包含过氧化物交联的PDMS,三水合氧化铝(ATH)和二氧化硅。 (i)潜在降解的来源和(ii)可以用于研究非常复杂的制剂的最佳分析方法都应特别注意。 (i)除了光老化,热老化,水解老化和使用寿命老化等传统类型的老化外,还进行了酸性蒸气,等离子体和臭氧的处理,这可能是由于高电场与空气的反应而产生的,允许加速电气和室外老化,并获得不同老化的材料。 (ii)除了常规的聚合物降解分析方法(例如FTIR / ATR光谱法和SEC,TG),硬度测量外,还进行了更具体的方法(例如光/ DSC,TG / IR,热孔隙率法,电阻率和密度测量)来表征化学物质高分子材料的物理演变。特别地,发现用硝酸蒸气处理对阻燃剂(例如ATH)和PDMSs的性质都具有有害影响,影响配制材料的硬度和电阻率。

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