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Study on the voltage endurance characteristics of mineral insulation oil impregnated pressboard

机译:矿物绝缘油浸压板的耐压特性研究

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As the growing emphasis on high voltage direct current (HVDC) transmission in power system, the reliability of converter transformer that is the vital equipment in DC transmission system becomes more important. The insulation system of converter transformer is mainly composed of insulating oil and pressboard, therefore the studies on DC voltage endurance (V-t) characteristics of the oil-impregnated pressboard are of great guiding significance for the insulation system design. In this paper, V-t characteristics of unused mineral insulation oil-impregnated pressboard have been studied in a completely seal V-t characteristics test system at 50°C. Firstly, the oil needs undergo a treating process to diminish the impurities, water and oxygen content in oil, and satisfy the requirements of water content <;10ppm and oxygen content <;500ppm. The transfer and store of the treated oils are all operated in the completely seal. The insulation board is uniform in thickness of 1mm, and dried 48h at 105°C before oil-impregnated. Then, the continuous boost condition method is adopted in the experiment to obtain the breakdown field strength of samples, and the voltage endurance tests of samples are carried out at eight different voltage levels respectively. The results show that the voltage endurance curve of oil-impregnated pressboard is approximately fitted exponential relationship with time in two time domains during 25 days. The life index n can be calculated by means of the inverse-power model of electrical aging. Based on the results, the electric life of oil-impregnated pressboard can be estimated under different voltage level. This study may have important implications for the insulation system design under DC field strength.
机译:随着电力系统中高压直流(HVDC)传输的日益重视,作为直流输电系统中至关重要的设备的换流变压器的可靠性变得越来越重要。换流变压器的绝缘系统主要由绝缘油和压板组成,因此研究含油压板的直流耐压特性对绝缘系统设计具有重要的指导意义。本文在50°C的全密封V-t特性测试系统中研究了未使用的矿物绝缘油浸压板的V-t特性。首先,需要对油进行处理过程以减少油中的杂质,水和氧含量,并满足水含量≤10ppm和氧含量≤500ppm的要求。处理后的油的转移和储存均完全密封进行。绝缘板的厚度均匀为1mm,在浸油前在105°C下干燥48h。然后,在实验中采用连续升压条件法获得样品的击穿场强,并分别在八个不同的电压水平下进行样品的耐压试验。结果表明,在25天内,浸油纸板的耐压曲线与时间在两个时域内近似拟合。寿命指数n可以通过电老化的逆功率模型来计算。根据结果​​,可以估算出在不同电压水平下浸油纸板的电气寿命。这项研究对于直流场强下的绝缘系统设计可能具有重要意义。

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