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Electrical Tree Growth and Its Partial Discharge Pattern in Silicone Rubber under AC Voltages

机译:AC电压下硅橡胶中的电气树成长及其局部放电模式

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Electrical tree aging is one of the main causes of failure for insulated electrical equipment. In this paper, electrical tree growth morphology and partial discharge (PD) characteristic were synchronously captured in silicone rubber (SIR). The experimental observations demonstrate that there are three typical tree morphology in SIR which are affected and transferred by the magnitude of AC voltage. Meanwhile, there are two typical tree growth pattern in SIR, including “growth-stagnation” pattern and “growth-fast growth-breakdown” pattern. It is found that the PD magnitude and PD pulse sequences are closely related to the electrical tree growth. The large discharge pulse number in half cycle is corresponding to the number of main tree channels. It is believed that PD is one of the contributing driving forces for electrical tree growth after it initiates. Small molecule cyclic polysiloxane generates and fills the channels in SIR with the PD happens. This mechanism is able to explain most of the phenomena observed in electrical treeing experiments of SIR, providing a theoretical basis to proper application of SIR in high-voltage electrical equipment.
机译:电气树老化是绝缘电气设备失效的主要原因之一。本文在硅橡胶(SIR)中同步地捕获了电气树生长形态和局部放电(PD)特性。实验观察结果表明,SIR中存在三种典型的树形形态,受到AC电压的幅度的影响和转移。同时,先生有两个典型的树增长模式,包括“生长停滞”模式和“生长 - 快速生长崩溃”模式。发现PD幅度和PD脉冲序列与电树长密切相关。半周期中的大放电脉冲数对应于主树通道的数量。据信,PD是在它启动后的电气树生长的贡献驱动力之一。小分子循环聚硅氧烷产生并用PD发生的主题填充声道。该机制能够解释先生的电气树实验中观察到的大部分现象,为适当应用SIR在高压电气设备中提供了理论依据。

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