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The Influence of Material Modification and Residues on Space Charge Accumulation in XLPE for DC Power Cable Application

机译:材料改性及残留物对XLpE直流电缆应用中空间电荷积累的影响

摘要

The effects of material modification and cross-linking by-products (residues) quantity on space charge accumulation and decay in XLPE have been investigated using the pulsed electro-acoustic technique. The threshold stress for space charge generation during voltage-ramping was found to show considerable variation and to depend upon the material and the amount of residue present. However, the modified XLPE material was found to exhibit a higher threshold for space charge accumulation than the reference XLPE whatever the conditions. De-gassed samples were found to exhibit the highest threshold stress, with that of the modified de-gassed XLPE accumulating no space charge at all even after 24 hours stressing at 70kV. In general heterocharge regions were formed when the residues were present and homocharge or no charge was formed when the residues were removed by degassing. Differences were also found in the space charge decay following short-circuit (volts-off), with the decay of heterocharge being rapid, whereas that of homocharge was slow. A tentative explanation is offered to explain these features.
机译:使用脉冲电声技术研究了材料改性和交联副产物(残基)数量对XLPE中空间电荷积累和衰减的影响。发现在电压斜坡期间产生空间电荷的阈值应力显示出相当大的变化,并取决于存在的材料和残留量。但是,发现无论何种条件,改性的XLPE材料都比参比XLPE具有更高的空间电荷积累阈值。发现脱气样品表现出最高的阈值应力,即使在70kV的应力下24小时后,改性的脱气XLPE样品也完全不累积空间电荷。通常,当存在残余物时形成杂电荷区域,并且当通过脱气除去残余物时形成均电荷或不形成电荷。短路(伏特关断)后,空间电荷的衰减也有所不同,杂电荷的衰减较快,而同质电荷的衰减较慢。提供初步解释以解释这些功能。

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