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A Comparative Study of Physicochemical, Dielectric and Thermal Properties of Pressboard Insulation Impregnated with Natural Ester and Mineral Oil

机译:天然酯和矿物油浸渍纸板绝缘材料理化性能,介电和热性能的比较研究

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摘要

Natural ester is considered to be a substitute of mineral oil in the future. To apply natural ester in large transformers safely, natural ester impregnated solid insulation should be proved to have comparable dielectric strength and thermal stability to mineral oil impregnated solid insulation. This paper mainly focuses on a comparative study of physicochemical, ac breakdown strength and thermal stability behavior of BIOTEMP natural ester/pressboard insulation and Karamay 25# naphthenic mineral oil/pressboard insulation after long term thermal ageing. The physicochemical and dielectric parameters including moisture, acids and the ac breakdown strength of these two oil/pressboard insulation systems at different ageing status were compared. The permittivity and ac breakdown strength of these two oil/pressboard insulation systems at different temperatures were also investigated. And a comparative result of the thermal stability behavior of these two oil/pressboard insulation systems with different ageing status was provided at last. Results show that though natural ester has higher absolute humidity and acidity during the long ageing period, the lower relative humidity of natural ester helps to keep its ac breakdown strength higher than mineral oil. The pressboard aged in natural ester also has higher ac breakdown strength than that aged in mineral oil. The lower relative permittivity ratio of natural ester impregnated paper to natural ester is beneficial to its dielectric strength. Using natural ester in transformer, the resistance to thermal decomposition of the oil/pressboard insulation system could be also effectively improved.
机译:天然酯被认为是未来矿物油的替代品。为了将天然酯安全地应用于大型变压器中,应证明天然酯浸渍固体绝缘具有与矿物油浸渍固体绝缘相当的介电强度和热稳定性。本文主要对长期热老化后的BIOTEMP天然酯/压榨绝缘材料和克拉玛依25#环烷基矿物油/压榨绝缘材料的理化,交流击穿强度和热稳定性能进行比较研究。比较了这两种油/压板绝缘系统在不同老化状态下的物理化学和介电参数,包括水分,酸和交流击穿强度。还研究了这两种油/压板绝缘系统在不同温度下的介电常数和交流击穿强度。最后给出了两种老化状态不同的油/压板保温系统的热稳定性能的比较结果。结果表明,尽管天然酯在长时间的老化过程中具有较高的绝对湿度和酸度,但较低的相对湿度有助于保持其ac击穿强度高于矿物油。在天然酯中老化的压板也比在矿物油中老化的压板高。天然酯浸渍纸与天然酯的较低相对介电常数比有利于其介电强度。在变压器中使用天然酯,还可以有效提高油/压板绝缘系统对热分解的抵抗力。

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