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Influence of sample thickness of low-density polyethylene film on packet-like charges behavior and dielectric breakdown

机译:低密度聚乙烯薄膜样品厚度对带状电荷行为和介电击穿的影响

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Many research works have been reported on space charge accumulation characteristic in polyethylene based materials, which are used as a power cable insulating material. In these reports, some of them show the relationship between the space charge accumulation and dielectric breakdown under DC high electric field. For example, Matsui et al, showed that the packet-like charges injected into Low-Density Polyethylene (LDPE) film with thickness of ca.150 μm lead to the dielectric breakdown under DC high electric field. The report said that the dielectric breakdown occurred within 30 minutes under various applied DC electric field of more than 200 kV/mm. Furthermore, the electric field in the material reached to about 550 kV/mm. It is considered that the dielectric breakdown in the LDPE is caused by an enhancement of the electric field locally. However, in our research, the dielectric breakdown was not observed in relatively thin LDPE film with a 30 μm-thick. In this study, we measured the space charge distribution in thin LDPE film of 30 μm-thick. The measurement was carried out using an improved PEA (Pulsed Electro-Acoustic) system with the positional resolution of less than 3 μm. Using this improved system, we investigated the influence of sample thickness on packet-like charges behavior and dielectric breakdown. As the results, we found while the packet-like charges behavior in 30 μm LDPE films showed a similar tendency to Matsui's results, the dielectric breakdown was not observed in the thin sample. In this report, we tried to understand the influence of the sample thickness on the dielectric breakdown.
机译:关于用作电力电缆绝缘材料的聚乙烯基材料中的空间电荷累积特性的许多研究工作已有报道。在这些报告中,其中一些报告显示了在直流高电场下空间电荷积累与介电击穿之间的关系。例如,Matsui等人表明,注入到厚度约为150μm的低密度聚乙烯(LDPE)膜中的小包状电荷会导致在直流高电场下发生电介质击穿。该报告说,在超过200 kV / mm的各种施加的直流电场下,介电击穿发生在30分钟之内。此外,材料中的电场达到约550 kV / mm。认为LDPE中的电介质击穿是由局部电场的增强引起的。但是,在我们的研究中,在厚度为30μm的相对较薄的LDPE膜中未观察到介电击穿。在这项研究中,我们测量了30微米厚的LDPE薄膜中的空间电荷分布。使用改进的PEA(脉冲电声)系统进行测量,位置分辨率小于3μm。使用这个改进的系统,我们研究了样品厚度对包状电荷行为和介电击穿的影响。结果,我们发现,虽然30μmLDPE膜中的包状电荷行为与松井的结果显示出相似的趋势,但在薄样品中未观察到介电击穿。在本报告中,我们试图了解样品厚度对介电击穿的影响。

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