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Influence of surface charge on DC flashover characteristics of epoxy/BN nanocomposites

机译:表面电荷对环氧/ BN纳米复合材料直流闪络特性的影响

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摘要

Epoxy is widely used in electronic and electrical devices because of its excellent insulation properties. The addition of nanoparticles to epoxy could change the material structure and then charge behaviors are altered as a consequence. The accumulation of surface charge may cause electric field distortion, which would lead to surface flashover. In this paper, the samples were made by dispersing nano-scale boron nitride (BN) particles in Epoxy with the weight ratios of 5, 10, 20, 30, 40 wt%. The samples were charged by a dc corona triode system using needle-plate electrodes. The distribution of charges was measured with an electrostatic voltmeter and the effect of nanoparticles on charge accumulation and decay behavior was studied. A flashover test was carried out under a dc stress between two finger-type electrodes. The effect of nanoparticles on flashover characteristics and the relation between surface charging and surface flashover were also investigated. The results showed that the traps between nanoparticles and the polymer, which were introduced by the added nanoparticles, could cause surface charge accumulation. In addition, the flashover occurred at a lower voltage because of the accumulated charge on the sample surface.
机译:环氧树脂由于其优异的绝缘性能而广泛用于电子和电气设备。将纳米粒子添加到环氧树脂中可能会改变材料结构,然后改变电荷行为。表面电荷的积累可能会导致电场失真,从而导致表面闪络。在本文中,样品是通过将纳米级氮化硼(BN)颗粒以5、10、20、30、40 wt%的重量比分散在环氧树脂中制成的。样品通过使用针板电极的直流电晕三极管系统充电。用静电电压表测量电荷的分布,并研究纳米粒子对电荷积累和衰减行为的影响。在两个手指型电极之间的直流应力下进行了闪络测试。还研究了纳米粒子对闪络特性的影响以及表面电荷与表面闪络之间的关系。结果表明,纳米粒子与聚合物之间的陷阱是由添加的纳米粒子引入的,可能导致表面电荷的积累。另外,由于样品表面上积累的电荷,闪络以较低的电压发生。

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