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Conductivity and space charge dynamics of XLPE samples during temperature cycling

机译:温度循环期间XLPE样品的电导率和空间充电动态

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Compression or press molding method has been widely used to create plates of polymeric material and characterize them. The method is based on melting granulates of polymer between two layers of protective film at high pressure and temperatures. Polyethylene terephthalate (PET) film has been utilized in many studies. In this paper space charge and conductivity have been simultaneously measured on press-molded samples. Two different XLPE samples were used; one prepared by PET and the other by aluminum (Al) as the press molding films. A pulsed electroacoustic (PEA) method was utilized to perform space charge measurements. To resemble the temperature conditions during type testing and qualifying DC cables, the measurements were done during temperature cycling. Based on the results, it was observed that the conductivity and electric field enhancement within the PET-pressed insulation was stronger than that of the Al-pressed one. In addition, the conductivity and space charge dynamics were also different. Such dynamics came to be visible by temperature cycling. Furthermore, there is a serious impact from the press molding film. This indicates that the choice of press film can lead to misrepresentation of the material properties.
机译:压缩或压制成型方法已广泛用于制造聚合物材料的板并表征它们。该方法基于在高压和温度下两层保护膜之间的聚合物熔化颗粒。在许多研究中已经使用聚乙烯对苯二甲酸乙二醇酯(PET)薄膜。在该纸张中,在压制模塑样品上同时测量空间电荷和电导率。使用了两种不同的XLPE样品;用PET和其他通过铝(Al)制备的一种作为压模膜。利用脉冲电声(PEA)方法来执行空间电荷测量。为了类似于在测试期间的温度条件和限定性DC电缆,在温度循环期间进行测量。基于结果,观察到宠物压缩绝缘内的电导率和电场增强比Al压制的电导率强。此外,电导率和空间充电动态也不同。这种动力学通过温度循环可见。此外,来自压模膜存在严重影响。这表明压榨膜的选择可以导致材料特性的虚假陈述。

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