Wang Peng, Hui Suxin, Akram Shakeel, Zhou Kai, Nazir Muhammad Tariq, Chen Yiwen, Dong Han, Javed Muhammad Sufyan, Ul Haq Inzamam
College of Electrical Engineering, Sichuan University, Chengdu 610065, China.
School of Mechanical and Manufacturing Engineering, University of New South Wales, Sydney, NSW 2052, Australia.
Polymers (Basel). 2020 Sep 27;12(10):2215. doi: 10.3390/polym12102215.
The application of wide band-gap power electronic devices brings more challenges to insulating packaging technology. Knowing the influence of applied voltage parameters on insulation performance is helpful to evaluate the insulation condition of electric power equipment. In this paper, the effect of repetitive square wave voltage duty cycle on the growth characteristics of electrical trees in epoxy resin was studied. The experimental results show that the square wave voltage duty cycle has a significant influence on treeing features. The electrical tree proportion initiation has shown a decreasing trend, and the shape of the electrical tree changes from pine-like to branch-like by increasing the duty cycles. The length and damaged area of electrical tree increased with the increase in the duty cycle up to 10% and then decrease by increasing the duty cycle higher than 30%. It indicates that a low duty cycle will enhance the electron injection and accumulate space charges and thus accelerate electrical tree development. Under short duty cycles, the electric field due to the shielding effect near the needle tip suppresses the electrical tree growth, which results in treeing growth stagnation. The obtained results are helpful to keep these parameters in mind during the design of epoxy-based insulation such high-voltage rotating machines and power electronic device packaging.
宽带隙电力电子器件的应用给绝缘封装技术带来了更多挑战。了解施加电压参数对绝缘性能的影响有助于评估电力设备的绝缘状况。本文研究了重复方波电压占空比对环氧树脂中电树枝生长特性的影响。实验结果表明,方波电压占空比对树枝化特性有显著影响。电树枝比例起始呈现下降趋势,通过增加占空比,电树枝的形状从松状变为枝状。电树枝的长度和损伤面积随着占空比增加到10%而增大,然后在占空比高于30%时减小。这表明低占空比会增强电子注入并积累空间电荷,从而加速电树枝的发展。在短占空比下,由于针尖附近的屏蔽效应产生的电场抑制了电树枝的生长,导致树枝化生长停滞。所得结果有助于在设计基于环氧树脂的绝缘材料(如高压旋转电机和电力电子器件封装)时考虑这些参数。