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Pattern Analysis on DC Breakdown Phenomenon of Polyethylene Films

机译:聚乙烯薄膜直流击穿现象的模式分析

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摘要

Pattern analysis method was used to study DC breakdown characteristics of low-density polyethylene (LDPE) film and high-density polyethylene (HDPE) film, with particular attention paid to the breakdown phenomenon identification. The breakdown pattern (BP) was recorded by a monocular-video-zoom microscope. The records showed that the effective area of BP was almost identical to the types of electrodes. The effective area was calculated by a mathematical integral method. The diameter was obtained by a mathematical statistic method. The study revealed that the DC breakdown voltage of LDPE was lower than that of HDPE. The diameter and effective area of LDPE were smaller than those of HDPE, but it is opposite for the condition of the needle-plane electrode with plane electrode grounded. As for the needle-plane electrode, the diameter and effective area with the films near the needle electrode were smaller than those near the plane electrode, and those in the middle of air gap were between them. As for the sphere-plane electrode, the diameter and effective area with the films near the plane electrode were smaller than those near the sphere electrode, and those in the middle of air gap were between them.
机译:运用模式分析法研究了低密度聚乙烯(LDPE)薄膜和高密度聚乙烯(HDPE)薄膜的直流击穿特性,特别是对击穿现象的识别。通过单眼视频变焦显微镜记录击穿图案(BP)。记录表明,BP的有效面积几乎与电极类型相同。有效面积通过数学积分法算出。通过数学统计方法获得直径。研究表明,LDPE的直流击穿电压低于HDPE。 LDPE的直径和有效面积小于HDPE的直径和有效面积,但对于平面电极接地的针状平面电极而言则相反。对于针状平面电极,在针状电极附近的膜​​的直径和有效面积小于在平面电极附近的膜​​的直径和有效面积,并且在气隙中间的膜在它们之间。对于球形平面电极,靠近平面电极的膜的直径和有效面积小于靠近球形电极的膜的直径和有效面积,并且在气隙中间的膜位于它们之间。

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