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Breakdown Performance of Compound Structure of Semi-conductive Layer and Insulating Layer for Submarine Cable

机译:半导体电缆半导电层和绝缘层化合物结构的击穿性能

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Submarine power transmission project has been recognized as one of the most complicated and difficult large-scale projects. Submarine cable as an important part of the power transmission project, its breakdown performance is very important, but there are few reports about breakdown performance of submarine cable. In this work, breakdown performance of compound structure of semi-conductive layer and insulating layer for submarine cable is studied. Firstly, compound structure samples of semi-conductive layer and XLPE insulating layer used for AC submarine cable are fabricated by the hot-melt welding method, and semi-conductive specimens with different carbon black (CB) contents are fabricated for experimental comparison. The morphology, resistivity of semi-conductive shielding layer and breakdown strength of semi-conductive layer and insulating layer are measured separately. In the temperature range of 30–100 °C, the resistance of the semi conducting shield increases, reaching the maximum value of $94.2 Omega cdot ext{cm}$ at 100 °C. Moreover, the resistivity of the semi-conductive shielding layer is relatively large as a whole. The scanning image shows that there are large carbon blocks in the semi conducting shielding layer of submarine cable. At room temperature, breakdown strength of compound structure of semi-conductive layer and the insulation layer is 107 kV/mm. The maximum compound structure breakdown strength of CB/LDPE/EVA semi-conductive layer and the insulation layer is 111.2 kV/mm. With the increase of CB content, breakdown strength of the compound structure of CB/LDPE/EVA semi-conductive layer and the insulation layer increases. The work has important guiding significance for the breakdown fault analysis of submarine cable.
机译:潜艇电力传输项目已被认为是最复杂和困难的大型项目之一。潜艇电缆作为电力传输项目的重要组成部分,其故障性能非常重要,但潜艇电缆故障性能很少有报道。在这项工作中,研究了半导体电缆半导电层和绝缘层的复合结构的击穿性能。首先,通过热熔焊接方法制造用于AC潜水线电缆的半导体层和XLPE绝缘层的复合结构样品,并制造具有不同炭黑(CB)内容物的半导电标本进行实验比较。分别测量半导电层和绝缘层的半导电屏蔽层的形态,电阻率和半导体层和绝缘层的击穿强度。在30-100°C的温度范围内,半导体屏蔽的电阻增加,达到最大值 $ 94.2 oomega cdot 文本{cm} $ 在100°C时。此外,半导电屏蔽层的电阻率与整体相对较大。扫描图像表明,潜艇电缆的半导体屏蔽层中存在大的碳块。在室温下,半导电层和绝缘层的复合结构的击穿强度为107kV / mm。 CB / LDPE / EVA半导体层和绝缘层的最大化合物结构击穿强度为111.2kV / mm。随着Cb含量的增加,CB / LDPE / EVA半导体层和绝缘层的复合结构的击穿强度增加。该工作对潜艇电缆的击穿故障分析具有重要的指导意义。

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