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Effect of cross-linking agent on space charge accumulation in XLPE under DC electric stress

机译:交联剂对直流电应力下交联聚乙烯中空间电荷积累的影响

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Cross-linked polyethylene (XLPE) is extensively used for AC high voltage power cable for many years. Because of the risk of space charge under DC electric field in unmodified XLPE, this material is seldom used today for DC applications. Improvement of the cross-linking process could be an alternative way to prevent premature failure in high voltage direct current cables. In this work, the effect of two different peroxides (used as cross-linking agents) on space charge accumulation in XLPE for DC power cables has been investigated using the pulsed electro-acoustic method (PEA). Press-molded XLPE samples were degassed at 50°C for 3 days to remove cross-linking by-products and gold electrodes were deposited onto the specimens by sputtering. The samples have been successively stressed at different levels of electric field from 10 to 40kV7mm followed by a polarity reversal at −40kV7mm. The electrodes are grounded after each polarization procedure. Both XLPEs show almost the same tendency, especially for field lower than 30 kV/mm. Also, the so-called "mirror image effect" has been observed during the polarity reversal for both materials.
机译:交联聚乙烯(XLPE)多年来广泛用于交流高压电力电缆。由于未经修饰的XLPE在直流电场下存在空间电荷的风险,因此该材料如今很少用于直流应用。改进交联过程可能是防止高压直流电缆过早失效的另一种方法。在这项工作中,已使用脉冲电声法(PEA)研究了两种不同的过氧化物(用作交联剂)对XLPE直流电源电缆中空间电荷积累的影响。将压制成型的XLPE样品在50°C下脱气3天,以除去交联副产物,并通过溅射将金电极沉积到样品上。样品已经在10至40kV7mm的不同电场强度下连续受力,然后在-40kV7mm的极性反转。在每次极化过程之后,将电极接地。两种XLPE都显示出几乎相同的趋势,尤其是对于低于30 kV / mm的电场。而且,在两种材料的极性反转期间已经观察到所谓的“镜象效应”。

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