Electrical Tree Growth in Polyethylene during the DC Voltage Rise and the Influence of the Tree Defect Size

Xi Zhu, Yalin Wang, Wenpeng Li, Y. Zhao, Jiandong Wu, Y. Yin, Qiaohua Wang
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引用次数: 1

Abstract

In order to investigate the electrical tree properties during the voltage rise and the influence of the tree defect on the tree propagation, the cross-linked polyethylene (XLPE) samples with different electrical tree defects which were generated by an AC stress were prepared and the voltage-regulating experiment is carried out. The typical needle plate was used where the tip radius of needle was 5µm and the distance between the needle tip and the sample bottom was about 1.5mm. The regulating voltage rose at a constant speed of 500V/ s for 10 seconds and maintained for 5 minutes. The progress was repeated until the electrical tree grew. After that the voltage was maintained at 30kV for 2 hours and then declined as the same regulation way. It was shown that the electrical tree grew remarkably at a typical branch shape during the voltage rise, while the tree had little change at DC voltage or declining voltage. As the tree defect length increases, the tree increment during the voltage rise decreases but the total tree increment over the experiment would increase. Space charge behavior around the tree tip would be applied to describe the tree characteristics at the rising DC voltage and DC voltage.
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直流电压上升过程中聚乙烯电树生长及电树缺陷尺寸的影响
为了研究电压上升过程中电树的特性以及电树缺陷对电树繁殖的影响,制备了交流应力产生不同电树缺陷的交联聚乙烯(XLPE)样品,并进行了调压实验。采用典型针板,针尖半径为5µm,针尖与样品底部的距离约为1.5mm。调节电压以500V/ s的恒定速度上升10秒,维持5分钟。这个过程不断重复,直到电子树生长起来。然后在30kV保持电压2小时,然后以同样的调节方式下降。结果表明,在电压升高过程中,电树呈典型枝状生长,而在直流电压和降电压下,电树变化不大。随着树形缺陷长度的增加,电压升高过程中树形增量减小,但整个试验过程中树形总增量增大。树尖周围的空间电荷行为将被用来描述树在直流电压上升和直流电压上升时的特性。
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