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Effects of magnetic field direction on treeing behavior of silicone rubber

机译:磁场方向对硅橡胶树形行为的影响

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Research is undertaken in this paper to clarify the effect of magnetic field (MF) direction on electrical tree propagation in silicone rubber (SiR). Needle-plate electrode is employed in the experiment. To avoid magnetic field stress on the needle electrode, this paper choose silver needles as the needle electrode, and previously placed in style. The dimension of sample is 10 mm × 10 mm × 20 mm. The distance between needle-plate electrode is 2 mm. Both repetitive pulse voltage and AC voltage is employed in the experiment. To study the effect of MF direction on the growth of electrical tree, the morphology of the electrical tree is observed from the direction of the MF and perpendicular to the MF, respectively. And the fractal dimension of the electrical tree under pulse voltage is analyzed. Obtained results show that under AC voltage, the tree morphology from two directions are similar with the increase of the magnetic flux density (MFD). Under pulse voltage, the increase of MFD can promote the growth of electrical tree in two directions. The promoting effect of the MF on the electric tree is stronger in the direction of the MF than that perpendicular to the MF.
机译:本文进行了研究,以澄清磁场(MF)方向对硅橡胶(SiR)中的电树传播的影响。实验中使用针板式电极。为避免磁场对针状电极施加压力,本文选择了银色针作为针状电极,并预先放置了样式。样品的尺寸为10 mm×10 mm×20 mm。针板电极之间的距离为2 mm。实验中同时使用了重复脉冲电压和交流电压。为了研究MF方向对电气树生长的影响,分别从MF方向和垂直于MF的方向观察电气树的形态。并分析了脉冲电压下电树的分形维数。结果表明,在交流电压下,两个方向的树形与磁通密度(MFD)的增加相似。在脉冲电压下,MFD的增加可以在两个方向上促进电树的生长。 MF对电树的促进作用在MF方向上比在垂直于MF的方向上要强。

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