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Electric characteristics of MgO/LDPE nanocomposite up to breakdown under DC ramp voltage

机译:MgO / LDPE纳米复合材料的电特性直至在直流斜坡电压下击穿

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摘要

To understand DC breakdown phenomena of low density polyethylene (LDPE) mixed with nano-sized magnesium oxide (MgO), the electric properties, namely, DC breakdown strength, conduction current, space charge formation and local heat generation up to the breakdown under increasing field with a particular rate of increase was investigated. DC breakdown strength of nanocomposite was found to be high compared to that of LDPE. The increasing rate of the conduction current in nanocomoposite with respect to the average field (under high field) was suppressed by the addition of MgO nano-filler. The space charge formation and the local heat generation were also suppressed under high field. From these results, it is suggested that the suppression effect of conduction current affected by the space charge led to higher DC breakdown strength of nanocomposite material.
机译:为了了解低密度聚乙烯(LDPE)与纳米级氧化镁(MgO)混合的直流击穿现象,电学性质,即直流击穿强度,传导电流,空间电荷形成和局部生热,直至电场增加时击穿以特定的增长率进行了调查。发现与LDPE相比,纳米复合材料的DC击穿强度高。通过添加MgO纳米填料,可以抑制纳米复合材料中导电电流相对于平均电场(在高电场下)的增加速率。在高场下也抑制了空间电荷的形成和局部发热。从这些结果表明,受空间电荷影响的传导电流的抑制作用导致纳米复合材料的更高的DC击穿强度。

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