In this work,the influence of the electrode surface roughness on the self-breakdown gas switch is investigated by physical analysis,computer simulation and experiment.Cu-W electrodes of different surface roughness wer...In this work,the influence of the electrode surface roughness on the self-breakdown gas switch is investigated by physical analysis,computer simulation and experiment.Cu-W electrodes of different surface roughness were tested under the conditions of a pulse repetitive frequency of50 Hz,self-breakdown voltage of~30 kV,and peak current of~2 k A for~93000 shots(the total charge transferred was~15 C).The coefficients of variation of the self-breakdown voltage of Cu-W 0.8,Cu-W 3.2 and Cu-W 12.5 electrodes were~2.95%,~1.62%and~1.16%,respectively.With the increase of electrode roughness,the erosion area decreased continuously,indicating that the breakdown positions were more stable and the coefficient of variation of breakdown voltage decreased.The method showed that decreasing the coefficient of variation of the self-breakdown voltage by increasing the surface roughness of electrode greatly improves the stability of the self-breakdown switch,which is significant for their application in compact highpower pulse power devices over a long time with stable operation.展开更多
金属化聚丙烯薄膜电容器(metallized polypropylene film capacitors, MPPFC)在充电条件下的自愈击穿可能造成电极和介质膜的永久性损伤,导致其电容减少和介电损耗增加。基于此,本文研究了MPPFC充电过程中的宏观特征量—自愈电压、自愈...金属化聚丙烯薄膜电容器(metallized polypropylene film capacitors, MPPFC)在充电条件下的自愈击穿可能造成电极和介质膜的永久性损伤,导致其电容减少和介电损耗增加。基于此,本文研究了MPPFC充电过程中的宏观特征量—自愈电压、自愈能量、电极损失面积等的演变规律并结合仿真分析了介质膜表面微观结构的变化特性。结果显示,自愈能量随自愈电压增加呈幂函数增长,与电极损失面积正相关,受电弧放电的影响,高压电极损失面积大于地电极且形状较地电极规则,其边界分形维数平均值(1.525)小于地电极(1.665)。此外,电极孔洞缺口轴向边缘的电流密度高于切向边缘,致使金属化聚丙烯薄膜自愈击穿过程中金属化电极轴向损伤高于切向。了解这些特性对全面揭示多场耦合复杂工况下MPPFC物性演化规律具有重要意义。展开更多
基金Huxiang Youth Talent Support Program(No.2020RC3030)State Key Laboratory of Pulsed Power Laser Technology(No.SK2021ZR02)。
文摘In this work,the influence of the electrode surface roughness on the self-breakdown gas switch is investigated by physical analysis,computer simulation and experiment.Cu-W electrodes of different surface roughness were tested under the conditions of a pulse repetitive frequency of50 Hz,self-breakdown voltage of~30 kV,and peak current of~2 k A for~93000 shots(the total charge transferred was~15 C).The coefficients of variation of the self-breakdown voltage of Cu-W 0.8,Cu-W 3.2 and Cu-W 12.5 electrodes were~2.95%,~1.62%and~1.16%,respectively.With the increase of electrode roughness,the erosion area decreased continuously,indicating that the breakdown positions were more stable and the coefficient of variation of breakdown voltage decreased.The method showed that decreasing the coefficient of variation of the self-breakdown voltage by increasing the surface roughness of electrode greatly improves the stability of the self-breakdown switch,which is significant for their application in compact highpower pulse power devices over a long time with stable operation.
文摘金属化聚丙烯薄膜电容器(metallized polypropylene film capacitors, MPPFC)在充电条件下的自愈击穿可能造成电极和介质膜的永久性损伤,导致其电容减少和介电损耗增加。基于此,本文研究了MPPFC充电过程中的宏观特征量—自愈电压、自愈能量、电极损失面积等的演变规律并结合仿真分析了介质膜表面微观结构的变化特性。结果显示,自愈能量随自愈电压增加呈幂函数增长,与电极损失面积正相关,受电弧放电的影响,高压电极损失面积大于地电极且形状较地电极规则,其边界分形维数平均值(1.525)小于地电极(1.665)。此外,电极孔洞缺口轴向边缘的电流密度高于切向边缘,致使金属化聚丙烯薄膜自愈击穿过程中金属化电极轴向损伤高于切向。了解这些特性对全面揭示多场耦合复杂工况下MPPFC物性演化规律具有重要意义。