直流电压和脉冲电压耦合下温度对氟化油浸纸表面电荷行为的影响

W.B. Zhu, B. Du, J. Li, J. Jiang, H. He, W. Li, L. Wei, X. C. Wang, H. Du
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引用次数: 0

摘要

油浸纸对换流变压器的可靠性和安全性起着至关重要的作用,而油浸纸上的电荷积累会导致电场畸变和过电压。此外,与电力变压器相比,温升问题更为突出,其原因是直流偏磁和谐波电流。因此,油浸纸的性能恶化是热应力和电场等多种因素综合作用的结果。根据我们以往的工作,表面氟化对绝缘材料的特性有明显的影响。本文研究了直流电压和脉冲电压耦合作用下温度对氟化油纸绝缘电荷特性的影响。氟的强电负性和氟化产生的微小空隙有助于捕获载流子,从而抑制载流子迁移率的提高。温度升高对氟化纸疏水深度的影响大于疏水密度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of Temperature on Surface Charge Behavior of Fluorinated Oil-impregnated Paper under the Coupling of DC and Pulse Voltages
The oil-impregnated paper plays a critical role in the reliability and safety of converter transformer, which is suffered by the accumulation of charges on oil-impregnated paper, leading to distorting the electric field and overvoltage. In addition, the problem of temperature rise is more prominent in contrast with the power transformer, which is attributed to the DC magnetic bias and harmonic current. As a consequence, the performance deterioration of oil-impregnated paper is a comprehensive result from multiple factors including thermal stress and electric field. Surface fluorination has obvious effect on the characteristics of the insulating material based on our previous work. This paper is dedicated to research effects of temperature on the charge characteristic of fluorinated oil-paper insulation under the coupling of DC and pulse voltage. The conclusions can be drawn that The strong electronegativity of fluorine and the tiny voids generated by fluorination contributes to capturing carriers for inhibiting the increase level of carrier mobility. The temperature rise has more influence in modifying the trap depth of the fluorinated paper in contrast with the trap density.
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