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首页> 外文期刊>Dielectrics and Electrical Insulation, IEEE Transactions on >Influence of temperature on electrical aging characteristics of polytetrafluoroethylene under nanosecond pulses
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Influence of temperature on electrical aging characteristics of polytetrafluoroethylene under nanosecond pulses

机译:温度对纳秒脉冲下聚四氟乙烯电老化特性的影响

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摘要

Polytetrafluoroethylene (PTFE) has been widely used in insulation equipment and high voltage apparatus due to its excellent insulating property. However, electrical aging phenomenon of PTFE may cause insulation failure under nanosecond pulses. Temperature is an important parameter that influences the electrical aging process. This paper investigated the effect of temperature on the electrical aging characteristics of PTFE under nanosecond pulses. A nanosecond pulse generator MPC50D based on magnetic pulse compression was used. The output voltage has a rise time of 30 ns and a full width at half maximum of 70 ns. The needle electrode was adopted to accelerate the aging process. The testing chamber SP-80U was used to control the temperature and humidity. The experimental results showed that the inception voltage increased and the speed of the aging process decreased when the temperature decreased. The effects of the pulse repetition rate and the impacting mechanism of temperature on electrical aging characteristics were also discussed.
机译:聚四氟乙烯(PTFE)由于其优异的绝缘性能而被广泛用于绝缘设备和高压设备。但是,PTFE的电老化现象可能会在纳秒脉冲下导致绝缘故障。温度是影响电老化过程的重要参数。本文研究了温度对纳秒脉冲下PTFE电老化特性的影响。使用了基于磁脉冲压缩的纳秒脉冲发生器MPC50D。输出电压的上升时间为30 ns,半峰全宽为70 ns。采用针状电极来加速老化过程。测试室SP-80U用于控制温度和湿度。实验结果表明,温度降低时,起始电压升高,时效速度降低。还讨论了脉冲重复频率和温度影响机理对电老化特性的影响。

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