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Investigation of space charge at the interface between the insulation of cable and its accessory

机译:研究电缆绝缘层及其附件之间的界面处的空间电荷

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According to the Maxwell-Wagner model, there is much amount of space charge at the interface between two different insulations. The more difference of ratios between dielectric constant and conductivity of both insulations, the higher amount of space charge emerges at the interface. And the higher amount of space charge stores at the interface, the more distortion of electrical field occurs. Therefore it is one of most important factors to considering the compatibility of dielectric constant and conductivity of cable and accessory insulations in polymer insulated HVDC power cable. There are many ways to evaluate the compatibility, such as calculating the ratios of dielectric constant and conductivity in both insulations at various temperatures. However, most of the ways are indirect and it is very difficult to satisfy the engineers designing cable accessory insulation. In the paper, composite samples of silicon and/ or ethylene-propylene-diene (EPDM) rubbers with LE4253 were prepared, respectively. Space charge at the interface between rubber and LE4253 were measured with pulse-acoustic method at various temperatures. It is found that character of space charge at the interface is the same in both composite samples. However, the amplitude of space charge at the interface between SIR/LE4253 is much greater than that at the interface between EPDM/LE4253 and it goes upwards quickly as the temperature arises. At the same time space charge at the interfaces in both composite samples moves distinctly towards both electrodes. In addition, the character of space charge in both kinds of rubbers varies at different vulcanizing temperatures. At last it is indicated that not only the space charge suppression of accessory insulation, but also the space charge at the interface in the composite sample should be considered as designing cable accessory.
机译:根据Maxwell-Wagner模型,两个不同绝缘体之间的界面处存在大量空间电荷。两种绝缘体的介电常数和电导率之比差异越大,界面处出现的空间电荷量就越大。而且,界面处存储的空间电荷量越大,电场的失真就越大。因此,考虑聚合物绝缘的HVDC电力电缆中电缆及其附件绝缘材料的介电常数和电导率的兼容性是最重要的因素之一。有许多方法可以评估兼容性,例如计算各种温度下两种绝缘体的介电常数和电导率之比。但是,大多数方法都是间接的,很难满足设计电缆附件绝缘的工程师的要求。在本文中,分别制备了具有LE4253的硅橡胶和/或乙烯-丙烯-二烯(EPDM)橡胶的复合样品。在不同温度下,通过脉冲声法测量橡胶和LE4253之间的界面处的空间电荷。发现在两个复合样品中界面处的空间电荷的特性是相同的。但是,SIR / LE4253之间的界面处的空间电荷的幅度要比EPDM / LE4253之间的界面处的空间电荷的幅度大得多,并且随着温度的升高,空间电荷的幅度会迅速上升。同时,在两个复合样品中的界面处的空间电荷明显地向两个电极移动。另外,两种橡胶中的空间电荷特性在不同的硫化温度下也不同。最后表明,不仅应考虑抑制附件绝缘的空间电荷,而且应考虑将复合样品界面处的空间电荷设计为电缆附件。

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