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Experimental Study on High Electrical Breakdown of Water Dielectric

机译:高水击穿电介质的实验研究

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By means of a coaxial apparatus, pressurized water breakdown experiments with microsecond charging have been carried out with different surface roughness of electrodes and different ethylene glycol concentrations of ethylene glycol/water mixture. The experimental results about the breakdown stress and the effective time are presented. The breakdown stress is normalized to the situation that the effective time is transformed to 1 μs and analyzed. The conclusions are as follows: (1) the breakdown stress formula is modified to E = 0.561MA-1/10t-1eff/NP1/8; (2)the coefficient M is significantly increased by surface polishing and ethylene glycol additive; (3) it is accumulative for the capacity of improving electrical breakdown strength for surface polishing,ethylene glycol additive, and pressurization, of which pressurization is the most effective method;(4) the highest stress of 235.5 kV/cm is observed in ethylene glycol/water mixture with an ethylene glycol concentration of 80% at a hydrostatic pressure of 1215.9 kPa and is about one time greater than that in pure water at constant pressure; (5) for pressurization and surface pohshing,the primary mechanism to improve the breakdown strength of water dielectric is the increase in the breakdown time delay. Research results indicate great potential in the application of the high power pulse conditioning system of water dielectric.
机译:借助于同轴设备,已经在不同的电极表面粗糙度和不同的乙二醇/水混合物的乙二醇浓度下进行了微秒充电的加压水分解实验。给出了击穿应力和有效时间的实验结果。将击穿应力归一化为有效时间转换为1μs并进行分析的情况。结论如下:(1)将击穿应力公式修改为E = 0.561MA-1 / 10t-1eff / NP1 / 8; (2)通过表面抛光和加入乙二醇可明显提高系数M; (3)具有提高表面抛光,乙二醇添加剂和加压电击穿强度的能力,其中加压是最有效的方法;(4)在乙二醇中观察到的最高应力为235.5 kV / cm静水压力为1215.9 kPa时,乙二醇浓度为80%的水/水混合物,是恒压纯水的约一倍; (5)对于加压和表面抛光,提高水介质击穿强度的主要机理是增加击穿时间延迟。研究结果表明在水电介质大功率脉冲调节系统的应用中具有巨大的潜力。

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