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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >Analysis of surface discharge activity in epoxy nanocomposites in liquid nitrogen under AC voltage
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Analysis of surface discharge activity in epoxy nanocomposites in liquid nitrogen under AC voltage

机译:交流电压下液氮中环氧纳米复合材料的表面放电活性分析

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摘要

A marginal increase in surface discharge inception voltage is observed with increase in percentage of clay in epoxy nanocomposites in liquid nitrogen medium. The flashover voltage of epoxy nanocomposites increases with increase in percentage of clay in epoxy resin up to 3 wt% and above which a slight reduction is observed but much higher than the pure epoxy resin.The intercalated and exfoliated properties were analyzed through TEM studies.Contact angle marginally vary with percentage of clay in epoxy resin. The surface variations of epoxy nanocomposites analysed through surface roughness measurement and by attenuated total reflectance Fourier transform infra-red spectroscopy (ATR-FTIR).The rise time of injected current pulse due to surface discharge process is measured to be 800 ps. The UHF signal generated due to surface discharge (at the point of inception and propagation) formation on epoxy resin with different percentage of clay in liquid nitrogen medium have dominant frequency near 1 GHz. The PRPD pattern obtained at the point of inception of surface discharges, the magnitude of discharges is nearly same in both half cycle of the applied AC voltage. Surface discharge occurs in the rising part of the applied AC voltage. When the applied voltage magnitude is increased, the higher magnitude discharges occurs at the positive half cycle of the applied AC voltage.
机译:随着液氮介质中环氧纳米复合材料中粘土含量的增加,观察到表面放电起始电压略有增加。环氧树脂纳米复合材料的闪络电压随环氧树脂中粘土含量的增加而增加,最高可达3 wt%,并且该值略有降低,但远高于纯环氧树脂。通过TEM研究分析了插层和剥离性能。角度随环氧树脂中粘土的百分比而略有变化。通过表面粗糙度测量和衰减全反射傅里叶变换红外光谱(ATR-FTIR)分析了环氧纳米复合材料的表面变化,测量了由于表面放电过程而注入的电流脉冲的上升时间为800 ps。由于在液氮介质中具有不同粘土含量的环氧树脂在表面放电(起始和传播点)形成而产生的UHF信号的主频接近1 GHz。在表面放电开始时获得的PRPD图案,在施加的交流电压的两个半周期中,放电幅度几乎相同。表面放电发生在施加的交流电压的上升部分。当施加的电压幅度增加时,在施加的交流电压的正半周会发生较高幅度的放电。

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