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The Impact of Water Conductivity, Electrode Material, and Electrode Surface Roughness on the Pulsed Breakdown Strength of Water

机译:导电性,电极材料和电极表面粗糙度对水的脉冲击穿强度的影响

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Experimental results are presented on the impact water conductivity, electrode material, and electrode surface roughness have on the dielectric strength of water. A 2 mm water gap was tested under pulsed conditions with maximum electric fields in excess of 1.5 MV/cm. Bruce profiled electrodes manufactured from various materials including molybdenum, aluminum, copper, tungsten, nickel, stainless steel, and zinc oxide, which have work functions ranging from 4.2 eV to 5.3 eV, have been tested. The roughness average of the various surfaces was varied from 0.1 mum to 1.96 mum and the conductivity of the water within the gap was varied from 1muS/cm to 39 muS/cm to determine the impact each has when tested in combination with the various electrode materials and surface roughnesses. Conclusions are made as to the effect each of these factors has on the holdoff strength of a water dielectric system
机译:实验结果显示在冲击导电性,电极材料和电极表面粗糙度上对水的介电强度。在脉冲条件下测试2mm水间隙,最大电场超过1.5mV / cm。已经测试了由包括钼,铝,铜,钨,镍,不锈钢,镍,不锈钢和氧化锌的各种材料制造的布鲁斯成型电极,该电极从4.2 eV到5.3eV中进行了工作功能。各种表面的粗糙度平均值从0.1毫米变化至1.96妈妈,间隙内的水导电率从1mus / cm到39 mus / cm变化,以确定当与各种电极材料组合测试时的冲击和表面粗糙度。结论是对每个因素对水电介质系统的缓和强度的影响

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