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首页> 外文期刊>Dielectrics and Electrical Insulation, IEEE Transactions on >Degradation mechanism of A12O3 nano filled polyimide film due to surface discharge under square impulse voltage
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Degradation mechanism of A12O3 nano filled polyimide film due to surface discharge under square impulse voltage

机译:方形脉冲电压下表面放电导致Al 2 O 3 纳米填充聚酰亚胺薄膜的降解机理

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摘要

Failure mechanism due to corona aging and characteristics of PD (partial discharge) on nano doped PI (polyimide) film are investigated under bipolar impulse voltage. Chemical characterization of material is analyzed through SEM (scanning electron microscope) and FTIR (Fourier transform infrared spectroscopy). The results show that failure of specimens is mainly caused by surface discharge which could be suppressed by the addition of nano particles. The AlO nano fillers improved the corona resistant property of PI film significantly. The corona resistant lifetime of PI/AlO sample is six times longer than that of pure PI. Furthermore, to know the frequency and rise time effect of surface discharge on specimens, mean discharge quantity of PD under impulse voltage is measured. Increase of pulse frequency leads to enhancement of PD activity, whereas increase of rise time, weakens PD activity. The discovered effects of profound significance will help on improving dielectric properties of nanocomposites towards various applications.
机译:研究了在双极性脉冲电压下,电晕老化引起的失效机理以及纳米掺杂的PI(聚酰亚胺)薄膜上的PD(局部放电)特性。通过SEM(扫描电子显微镜)和FTIR(傅里叶变换红外光谱)分析材料的化学特性。结果表明,试样的破坏主要是由表面放电引起的,可以通过添加纳米颗粒来抑制。 AlO纳米填料显着提高了PI膜的耐电晕性能。 PI / AlO样品的耐电晕寿命是纯PI的六倍。此外,为了了解表面放电对样品的频率和上升时间的影响,测量了脉冲电压下PD的平均放电量。脉冲频率的增加会导致PD活性增强,而上升时间的增加会削弱PD活性。所发现的具有深远意义的效应将有助于改善纳米复合材料的介电性能,以用于各种应用。

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