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Comparative studies on the aging of thermally upgraded paper insulation in palm fatty acid ester, mineral oil, and natural ester

机译:棕榈脂肪酸酯,矿物油和天然酯中热升级纸绝缘的老化比较研究

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A new biodegradable dielectric fluid for transformers, palm fatty acid ester (PFAE), with better cooling performance and oxidation stability than conventional mineral oil (MO) was developed in 2008. The aging of thermally upgraded paper (TUP) in PFAE was evaluated, comparing to MO and natural ester (FR3). The electrical properties of aged dielectric fluids were compared. Sealed aging SUS tanks containing copper, silicon steel, TUP, and PFAE, MO and FR3 (partly) in a nitrogen environment were aged at 130 °C-170°C for 20-120 days, with low concentrations of oxygen and moisture strictly controlled. Paper degradation after aging was determined using the degree of polymerization measurements. The gas production characteristics during the aging process were also compared. The results show that the TUPs in PFAE age at slower rates than those in MO, while at faster rates than those in FR3. Under the possibly low initial concentration of oxygen and water in the fluids in the absence of other material which may produce water during aging process, the limit service temperature for TUP in MO and PFAE with expected 30-year lifetime (DP450) would possibly reach 109°C and 113°C, respectively. Life estimation results show that the lifetime of the TUP in PFAE aging at 110°C would be at least 1.6 times the lifetime of the TUP in MO, if DP450 was set as the end-of-life point of the TUP. Aged PFAE exhibits highest breakdown voltage among the three types of dielectric fluid. Much lower acid value of aged PFAE than FR3 reveals that PFAE has better hydrolytic stability, which could ensure the safe operation of transformers. The aging mechanism is proposed.
机译:于2008年开发了一种新型的可生物降解的变压器绝缘介电液,棕榈脂肪酸酯(PFAE),其冷却性能和氧化稳定性均优于常规矿物油(MO)。评估了热提升纸(TUP)在PFAE中的老化情况,并进行了比较MO和天然酯(FR3)。比较了老化的介电液的电性能。在氮气环境中将包含铜,硅钢,TUP以及PFAE,MO和FR3(部分)的密封老化SUS罐在130°C-170°C下老化20-120天,并严格控制低浓度的氧气和水分。使用聚合度测量确定老化后的纸张降解。还比较了老化过程中的产气特性。结果表明,PFAE中的TUP的年龄比MO中的TUP慢,而比FR3中的TUP更快。在没有其他可能在老化过程中产生水的物质的情况下,在流体中氧气和水的初始浓度可能较低的情况下,MO和PFAE中TUP的预期使用寿命(DP450)的极限使用温度可能达到109分别为°C和113°C。寿命估算结果表明,如果将DP450设置为TUP的寿命终点,那么110°C时PFAE中TUP的寿命将至少是MO中TUP寿命的1.6倍。老化的PFAE在三种介电液中表现出最高的击穿电压。老化的PFAE的酸值比FR3低得多,这表明PFAE具有更好的水解稳定性,可以确保变压器的安全运行。提出了老化机理。

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