Space charge accumulation and electric breakdown in XLPE under DC high electric field

H. Suzuki, Ando Nozomu, H. Miyake, Y. Tanaka, T. Maeno
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引用次数: 20

Abstract

We have observed space charge profiles using the PEA (pulsed electro-acoustic) system in low density polyethylene (LDPE) and cross-linked polyethylene (XLPE) under high electric dc field to study a relationship between space charge behavior and dielectric breakdown. XLPE, which is used as an insulating material of ac power cable, is also expected to be applied as the insulating layer of DC long distance power cable. To apply the polymeric materials for the insulating layer of a dc power cable, it is necessary to understand the "space charge" effect under high dc stress. In our previous research works, we have found that a large amount of, so called, packet-like charge generates in LDPE under dc high electric field of more than 100 kV/mm and it enhances the electric field locally in balk of the sample, and finally it leads a breakdown. On the other hand, such breakdown process has not been reported for XLPE yet. Because it was difficult to get a thinner XLPE sample as LDPE was. However, since we need to understand the relationship between the space charge and the breakdown in XLPE, we tried to measure them using specially arranged PEA system for high voltage application. In this report, we investigate the space charge formation and electric breakdown characteristics in XLPE. As the results, it is found that the relationship between the space charge and the breakdown in XLPE is completely different from that in LDPE. Since the XLPE was chemically made from LDPE using cross-linked agent at high temperature. It is assumed that the breakdown strength in XLPE is strongly affected by both of the residues of the cross-linking by products and the heat history.
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直流强电场作用下交联聚乙烯的空间电荷积累与电击穿
利用脉冲电声系统对低密度聚乙烯(LDPE)和交联聚乙烯(XLPE)在高直流电场作用下的空间电荷分布进行了观察,研究了空间电荷行为与介质击穿的关系。交联聚乙烯作为交流电力电缆的绝缘材料,也有望应用于直流长途电力电缆的绝缘层。为了将聚合物材料应用于直流电力电缆绝缘层,必须了解高直流应力下的“空间电荷”效应。在我们之前的研究工作中,我们发现在大于100 kV/mm的直流高电场作用下,LDPE中会产生大量的所谓包状电荷,并使样品的阻挡处局部电场增强,最终导致击穿。另一方面,这种分解过程在XLPE中还没有报道。因为很难得到像LDPE那样薄的XLPE样品。然而,由于我们需要了解XLPE中空间电荷与击穿之间的关系,我们尝试使用专门安排的高压应用PEA系统来测量它们。本文研究了XLPE的空间电荷形成和电击穿特性。结果表明,XLPE中空间电荷与击穿的关系与LDPE中完全不同。由于XLPE是由LDPE在高温下使用交联剂化学合成的。假定交联副产物的残余和热历史对交联聚乙烯的击穿强度有很大的影响。
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