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Effects of palm-based trimethylolpropane ester/mineral oil blending on dielectric properties and oxidative stability of transformer insulating liquid

机译:棕榈基三羟乙烯丙烷酯/矿物油混合对介电性能及氧化稳定性的影响

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摘要

Blending of palm-based ester can effectively increase the flash point and thermal-oxidative stability of mineral transformer oil especially in the event of high loading and high temperature. Inversely, owing to the excellent dielectric properties of mineral oil, the dielectric properties of the esters can also be improved. Thus, high oleic palm-based trimethylolpropane (TMP) ester was blended and homogenized with 20 to 50 % of mineral oil, and the physico-chemical and electrical properties of each base fluid was compared with that of pure TMP ester and pure mineral oil. The samples were also subjected to oxidative stability test conducted at 95C for 500 hours, with the presence of water, oxygen and copper/steel catalyst. During ester and mineral oil degradations, the oxidized oils take on dark brown color with the increase in oxidation products concentration and the sludge formation due to the reaction between the oil and the metal catalyst. XRF measurements performed on the samples showed an increase in iron and sulfur contents, which can be explained by the formation of superficial surface layer of iron (II) sulfide or ferrous sulfide. From the investigations, it was found that the 80/20 of ester/mineral oil blending sample have properties near to the standard values for transformer liquid insulation; thus, it can potentially replace traditional mineral oil as an alternate liquid insulation.
机译:棕榈酯的混合可以有效地提高矿物变压器油的闪点和热氧化稳定性,特别是在高负荷和高温的情况下。由于矿物油的优异介电性能,因此也可以提高酯的介电性能。因此,将高油菜棕榈基三羟甲基丙烷(TMP)酯混合并用20至50%的矿物油均化,并将每个碱流体的物理化学和电性能与纯TMP酯和纯矿物油进行比较。还经受在95℃的氧化稳定性试验,500小时,存在水,氧和铜/钢催化剂。在酯和矿物油降解期间,氧化油随着氧化产物浓度的增加和由于油和金属催化剂之间的反应而导致氧化产物浓度和污泥形成。对样品进行的XRF测量显示熨斗和硫含量增加,这可以通过形成耐铁(II)硫化物或硫化亚铁的浅表表面层来解释。从调查中,发现80/20的酯/矿物油混合样品具有靠近变压器液体绝缘的标准值的特性;因此,它可能会替代传统的矿物油作为交替的液体绝缘。

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