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High field dielectric properties of low density polyethylene with a very small dent on film surface under AC ramp electric field application

机译:在AC斜坡电场应用下,低密度聚乙烯的高密度聚乙烯的高密度聚乙烯介电性能

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Latest power cables which insulating material is cross-linked polyethylene (XLPE) have taken measures to prevent water tree deterioration. Thus, not only its operating electric field, but also its stability and reliability are getting higher. However, due to operating for long duration, it is also considered that there is a risk of sudden breakdown from a very small defect or contaminant in the insulator. Therefore, it is very important to study a conduction mechanism of LDPE with a very small dent on film surface under AC high field. Some typical phenomena of LDPE under AC high field, such as charge injection from an electrode, space charge formation at vicinity of electrode and so on, were reported by the authors [2], [3]. To estimate these conduction mechanisms, a simultaneous observation of dissipation current and EL has been carried out. These conduction mechanisms are the phenomena having the time-dependent. Thus, it is very important to make the electric field application history equal in each sample. So, a simultaneous observation under an AC ramp electric field application was introduced to control the electric field application history. It makes easy to evaluate the time dominant phenomena under AC high field. There is another advantage. The time for data acquisition is only 10 s from low electric field to high electric field. In this paper, in order to estimate the effects of the mechanical damage on surface to the dielectric properties, three kinds of mechanically damaged LDPE films were prepared. By using these samples, the simultaneous observation of dissipation current waveform and EL has been carried out under AC ramp electric field application. As the results of experiments, the effects by the mechanical damage on surface to the dielectric properties in AC high field are discussed.
机译:最新的电力电缆,绝缘材料是交联聚乙烯(XLPE)采取措施防止水树劣化。因此,不仅其操作电场,而且其稳定性和可靠性也越来越高。然而,由于在持续时间长,还认为存在突然从绝缘体中的非常小的缺陷或污染物突然分解的风险。因此,在AC高场下研究LDPE的传导机制非常重要。作者[2],[2],[2],[2],[2],[2],[2],[3],诸如来自电极的电荷注射,诸如电极附近的电荷喷射,依赖于电极的空间电荷形成。为了估计这些传导机制,已经进行了对耗散电流和EL的同时观察。这些传导机制是具有时间依赖的现象。因此,在每个样本中使电场应用历史相等是非常重要的。因此,引入了AC斜坡电场应用下的同时观察以控制电场应用历史。它很容易评估AC高场下的时间主导现象。还有另一个优势。数据采集​​时间仅是从低电场到高电场的10秒。在本文中,为了估计机械损伤对表面的效应,制备了三种机械损坏的LDPE薄膜。通过使用这些样品,在AC斜坡电场应用下已经进行了耗散电流波形和EL的同时观察。作为实验结果,讨论了通过机械损伤对AC高场中介电性质的机械损伤的影响。

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