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Evaluation of the Effect of Moisture on Dielectric Properties of Ester Liquids

机译:水分对酯液介电性能影响的评价

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Four different types of insulation liquids have been investigated: synthetic ester MIDEL 7131, natural esters MIDEL 1204, MIDEL 1215, as well as Nytro Gemini X mineral oil as reference material. The liquids were subjected to different humidity conditions (32% and 75% respectively) and subsequently characterized by means of AC breakdown, DC conductivity, dielectric spectroscopy (for permittivity and loss tangent) as well as KF titration. The effect of moisture on the loss tangent was minimal in ester liquids, even when saturated, while the temperature dependence of esters was more pronounced than that of mineral oil. The expectation was that synthetic esters would show improved AC breakdown results, but this was not the case. Natural ester MIDEL 1215 showed the best breakdown strength, also outperforming the mineral oil, while the synthetic ester had significantly reduced Weibull scale and shape parameters. Contrary to expectations, natural ester MIDEL 1215 performed significantly better than the synthetic ester in terms of AC breakdown strength and temperature dependence of conductivity and loss factor. Synthetic ester was also found to be much more dependent on moisture content than the natural ester.
机译:已经研究了四种不同类型的绝缘液:合成酯MIDEL 7131,天然酯MIDEL 1204,MIDEL 1215,以及Nytro Gemini X矿物油作为参考材料。液体经受不同的湿度条件(分别为32%和75%),随后通过AC击穿,直流电导率,介电光谱(用于介电常数和损失切线)以及KF滴定来表征。即使饱和时,酯液中的损失切线对损失切线的影响也是最小的,而酯的温度依赖性比矿物油更显着。期望是,合成酯将显示出改善的交流分解结果,但情况并非如此。天然酯MIDEL 1215显示出最佳的击穿强度,也优于矿物油,而合成酯显着降低了WIBULL比例和形状参数。与期望相反,在AC击穿强度和导电性和损失因子的温度依赖性方面,天然酯中毒1215比合成酯在更好的情况下进行。还发现合成酯更依赖于水分含量而不是天然酯。

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