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Effect of repetitive rates of impulse voltage on electrical treeing in epoxy and barrier composited insulations

机译:脉冲电压重复率对环氧树脂和屏障组成绝缘中电岭的影响

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Electrical treeing is regarded as one of the most significant mechanism for dielectric breakdown in polymeric materials of high voltage equipment. For wind turbine generator (WTG), the insulation system would withstand the repetitive square waveform impulse electric stress as the application of the invert unit, which would promote the growth of electrical tree. In this paper, the effect of repetitive rate of the square waveform impulse voltage on electrical tree propagation in insulation composited with epoxy resin and barriers were investigated. Two kinds of the most common insulation tapes/films, the polyimide film and glass fiber reinforcing mica powder tape, were chosen as the barrier materials in this paper. The electrical tree experiments were conducted under the impulse voltage with the repetitive rate of 2, 4 and 8 kHz. The experimental results indicated that higher repetitive rate would promote the propagation of electrical tree by increasing the number of discharges in the channel. Near the barrier, the gradient of transverse length over the number of cycles increased fastest at 8 kHz, while at 2 and 4 kHz, there is no significant difference. For two kinds of barrier material, glass fiber reinforcing mica powder tape could suppress the electrical tree extension effectively, which might be due to the stronger bond between the epoxy resin and the barrier.
机译:电气树被认为是高压设备聚合物材料中的介电击穿最重要的机制之一。对于风力涡轮发电机(WTG),绝缘系统将承受重复的方波脉冲电应力作为反转单元的应用,这将促进电气树的生长。本文研究了方形波形脉冲电压重复率对与环氧树脂和屏障组成的绝缘中的电树繁殖的效果。选择两种最常见的绝缘带/薄膜,聚酰亚胺膜和玻璃纤维增​​强云母粉带,作为本文的阻挡材料。电气树实验在脉冲电压下进行,重复率为2,4和8kHz。实验结果表明,通过增加通道中的放电次数,重复率较高的重复率将促进电气树的传播。在屏障附近,横向长度在循环次数上的梯度在8kHz增加最快,而在2和4kHz时,没有显着差异。对于两种屏障材料,玻璃纤维增​​强云母粉胶带可以有效地抑制电树延伸,这可能是由于环氧树脂和屏障之间的更强的结合。

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