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Electro-insulating Paper Degradation in Various Electro-insulating Fluids

机译:各种电绝缘流体的电绝缘造纸降解

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The durability and safe operation of electrical equipment and devices with mixed insulation systems (solid/ fluid - electro-insulating paper/oil) is determined by the insulation aging under simultaneous and synergic actions of electrical, thermal and chemical stress factors etc. In this context, degradations of insulating paper exposed to thermal aging in 5 different types of electro-insulating fluid have been studied experimentally. Liquid chromatography determinations have shown that the total content in furan products (resulting from cellulose degradation) in mineral oils is substantially higher than in electro-insulating fluid sorts based on of synthetic ester and/or natural ester (vegetable oil). This is due to the temperature between 90 oC and 130 oC when the activation energy of the furans formation process is up to 7.5 times lower in mineral oils than in ester-based oils. Degree determinations of cellulose polymerization (viscosimetric method) before and after exposure to heat treatment indicated that mineral oils degrade the electro-insulating paper much more strongly than ester-based oils (both synthetic and natural). Obtained results by liquid chromatography and by viscosity are in accordance with the images obtained by optical microscopy (at X 100).
机译:电气设备和具有混合绝缘系统(固体/流体 - 电绝缘纸/油)的装置的耐用性和安全操作由电气,热和化学胁迫因子的同时和协同作用下的绝缘老化确定。在这种情况下通过实验研究了暴露于5种不同类型的电绝缘流体热老化的绝缘纸的降解。液相色谱法测定表明,矿物油中呋喃产物(由纤维素降解)的总含量基本上高于基于合成酯和/或天然酯(植物油)的电绝缘流体分类。这是由于90℃和130℃之间的温度,当呋喃形成过程的激活能量高达矿物油中的7.5倍,而不是酯基油。纤维素聚合(吸收法)在暴露于热处理之前和之后的度测定结果表明,矿物油比酯基油(合成和天然合成)更强烈地降解电绝缘纸。通过液相色谱和粘度获得的结果根据光学显微镜(在X 100)获得的图像。

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