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The accumulation characteristics for surface charge on the insulator under nanosecond pulse voltage in vacuum

机译:真空纳秒脉冲电压下绝缘子表面电荷的累积特性

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The electric field could be distorted by the accumulated surface charge on the insulator, even flashover voltage could be decreased. In vacuum, the flashover voltage of the insulator is much lower than both insulator's materials and the vacuum gap in the same dimension. In order to enhance the flashover voltage under nanosecond pulse voltage in vacuum, it is very important to take the study of the distribution of the surface charge of the insulator. A set of insulator surface charge measurement system under nanosecond pulse in vacuum has been set up in this paper. This paper adopts the electrostatic capacitance probe method to acquire the distribution of surface charge of the different samples, and compares the characteristics of surface charge accumulation among different samples. The results indicate that there is obviously charge accumulated on the surface of sample without additive, while on the surface of sample mixed with additive there is no charge accumulated or the charge accumulation amount is less than the probe sensitivity. Comparing the charge accumulation amount of all samples under three pulses to that under one pulse, there is an obvious increase.
机译:电场可以通过绝缘体上的累积表面电荷而扭曲,即使是闪络电压也可以降低。在真空中,绝缘体的闪络电压远低于绝缘体的材料和相同尺寸的真空间隙。为了在真空中提高纳秒脉冲电压下的闪络电压,研究绝缘体的表面电荷分布的研究非常重要。本文已经建立了一组绝缘体表面电荷测量系统在真空中的纳秒脉冲下。本文采用静电电容探头方法来获取不同样品的表面电荷分布,并比较不同样品之间的表面电荷累积特性。结果表明,在没有添加剂的样品表面上显然积聚在样品表面上,同时在与添加剂混合的样品表面上,没有电荷累积或电荷累积量小于探针灵敏度。将所有样品的电荷累积量与三个脉冲下的所有样品进行比较,在一个脉冲下,显然增加。

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