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The Effects of Nano-SiO2 on the Electrical Treeing Resistance of XLPE

机译:纳米SiO 2 对XLPE电砍伐电阻的影响

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In order to systematically investigate the effects of nano-SiO2 on the AC and DC electrical treeing resistance properties of XLPE, nano-SiO2/XLPE composite with the doping rate of 1wt% was prepared using parallel twin screw extruder. An electrical tree real-time observation system was designed. With untreated XLPE and commercial available XLPE for DC cable insulation as reference, the doping effects of nano-SiO2 on the electrical tree initiation and growth characteristics under AC voltage and periodically grounded DC voltage were tested under different voltages using needle-plate electrode system. The test results indicate that: the periodically grounded DC electrical tree initiation and growth are more difficult and less harmful than the AC electrical tree. Periodically grounded DC electrical tree initiation of commercial DC cable XLPE is more difficult and the tree growth is much slower than that of untreated XLPE. Nano-SiO2/XLPE composite has significant inhibition effect on the initiation and growth of the periodically grounded DC electrical tree, its periodically grounded DC electrical tree initiation property is superior to the commercial DC cable XLPE, and its growth speed of periodically grounded DC electrical tree is between the untreated XLPE and commercial DC cable XLPE. The AC electrical tree test results indicate that: initiation voltage of AC electrical tree of nano-SiO2/XLPE is 13.6% higher than that of untreated XLPE, the AC tree length of nano-SiO2/XLPE is lower than the untreated XLPE in the early growth stage. However, the AC tree length of SiO2/XLPE exceeds that of untreated XLPE after a certain time of stress.
机译:为了系统地研究纳米二氧化硅的影响 2 上XLPE,纳米二氧化硅的AC和DC电树电阻特性 2 用1wt%的掺杂率/ XLPE复合使用平行双螺杆挤出机来制备。电树枝实时观测系统的设计。与未处理的XLPE和用于直流线缆绝缘作为参考的市售交联聚乙烯,纳米二氧化硅的掺杂效果 2 上的交流电压,并周期性接地的直流电压下的电树的萌生和扩展特性下,使用针板电极系统不同的电压测试。试验结果表明:周期性接地的DC电树枝引发和增长比AC电树更困难和更有害。商业直流电缆XLPE周期性接地DC电树开始是比较困难的,树的生长比未经处理的XLPE的慢得多。纳米二氧化硅 2 / XLPE复合材料具有对起始和周期性接地DC电树的生长显著抑制效果,其周期性地接地DC电树起始特性优于商业DC电缆XLPE,并周期性地接地的DC电树的其生长速度是间未处理XLPE和商业DC电缆XLPE。交流电树测试结果表明:纳米二氧化硅的AC电树枝起始电压 2 / XLPE比未处理的XLPE,纳米二氧化硅的AC树长度的更高13.6% 2 / XLPE比在早期生长阶段的未处理XLPE低。然而,一氧化硅AC树长 2 / XLPE超过应力的一定时间后未处理XLPE的。

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