High Voltage Gradient ZnO-Based Varistors from ZnO Nano-powders for DC Current Switching Application

Xiangjun Zeng, Wenfeng Liu, Lei Zhang, Zhi Wang, Shengtao Li, Fuzeng Zhang, Tingting Wang, Y. Liao
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Abstract

With the increasing demand for high voltage level and miniaturization of extensive power equipment, ZnO ceramics, as key energy absorption elements in DC current breakers, are required to possess even higher voltage gradient. In this paper, nano-sized starting materials ZnO powders were employed to achieve the high voltage gradient. The effect of sintering temperature on the microstructural evolution and electrical characteristics of these obtained varistors were investigated by means of XRD, SEM, J-E measurement and dielectric spectroscopy. Experimental results showed that the fine sized powder could contribute to the high voltage gradient; the optimized sintering temperature for nano-sized starting ZnO powders was 1050°C. The obtained ZnO ceramics sintered at 1050°C exhibited high voltage gradient of 805 V/mm, which was over 4-times than that of the commercial varistors. Meanwhile such ceramics possessed large nonlinear coefficient of 30 and the low leakage current of 1.38 μA/cm2. Such improved performance may could be ascribed to the decreased grain size, the enhanced microstructure homogeneity and the well-formed double Schottky-barrier. Such result indicated the nano-sized ZnO powders as the starting raw material may benefit the high performance of ZnO varistors and is a promising solution to the miniaturization of DC current breakers.
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用于直流开关的ZnO纳米粉体高电压梯度ZnO基压敏电阻
随着电力设备对高电压水平和小型化要求的不断提高,作为直流电流断路器关键吸能元件的ZnO陶瓷对电压梯度的要求越来越高。本文采用纳米级ZnO粉体作为起始材料,实现了高电压梯度。采用XRD、SEM、J-E测量和介电谱等手段研究了烧结温度对所制压敏电阻微观结构演变和电学特性的影响。实验结果表明,细粒度粉末有助于提高电压梯度;纳米氧化锌粉体的最佳烧结温度为1050℃。在1050℃下烧结得到的ZnO陶瓷具有805 V/mm的高电压梯度,是商用压敏电阻的4倍以上。同时,该陶瓷具有较大的非线性系数30和低漏电流1.38 μA/cm2。晶粒尺寸减小、微观组织均匀性增强、双肖特基势垒形成良好是提高材料性能的主要原因。研究结果表明,以纳米氧化锌粉体为起始原料,可以提高ZnO压敏电阻器的性能,是解决直流电流断路器小型化问题的有效途径。
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