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The impacts of degassing on space charge characteristics and DC conductivity in semicon-bonded XLPE for HVDC cable applications

机译:脱气对用于HVDC电缆的半粘合XLPE中的空间电荷特性和DC电导率的影响

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High voltage direct current (HVDC) cables are one of the key components for the HVDC power transmission system. HVDC cables for higher voltage level, larger power capacity and higher reliability are still desired for the power industry as part of a global power strategy. One of the major concerns related to HVDC applications is the presence of space charge within the dielectrics, which distorts the electric field distribution and contributes to accelerated ageing and consequent failure of the cable insulation. The byproducts generated from the crosslinking process during the manufacture of XLPE insulation for HVDC cable are one of the major sources of hetero-charge formation in dielectrics. Therefore, degassing is widely applied in cable manufacture for the removal of such crosslinking byproducts. In this paper, composite XLPE samples were produced that include two layers of semiconductive polymer (semicon), which are thermally bonded on the top and bottom of the XLPE insulation, to mimic a real cable manufacturing process. The samples were degassed under vacuum and elevated temperature for 1, 3 and 6 days and their space charge characteristics and conductivities were then measured at an applied field of 40 kV/mm. The influence of the degassing period and the semicon material formulation on space charge formation and distribution in the system are discussed and the findings are compared with undegassed samples.
机译:高压直流(HVDC)电缆是HVDC输电系统的关键组件之一。作为全球电力战略的一部分,电力行业仍需要用于更高电压水平,更大功率容量和更高可靠性的HVDC电缆。与HVDC应用有关的主要问题之一是电介质中存在空间电荷,这会扭曲电场分布并导致加速老化并导致电缆绝缘层失效。在用于HVDC电缆的XLPE绝缘体的制造过程中,由交联过程产生的副产物是电介质中形成杂电荷的主要来源之一。因此,脱气被广泛用于电缆制造中以去除这种交联副产物。在本文中,生产的复合XLPE样品包括两层半导电聚合物(semicon),它们热粘合在XLPE绝缘体的顶部和底部,以模仿实际的电缆制造过程。将样品在真空和高温下脱气1、3和6天,然后在40 kV / mm的施加电场下测量其空间电荷特性和电导率。讨论了脱气时间和半导体材料配方对系统中空间电荷形成和分布的影响,并将结果与​​未脱气的样品进行了比较。

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