结晶形态对pp基电缆绝缘直流-预应力击穿特性的影响

M. Fan, S. Zhou, Zhonglei Li, B. Du, Fan Yu, Hong‐Da Yan
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引用次数: 2

摘要

聚丙烯(PP)作为热塑性电缆绝缘材料,与传统交联聚乙烯(XLPE)相比,具有工作温度高、绝缘性能好、可循环利用等优点。本文研究了聚丙烯的等温结晶对其电性能的影响。制备了不同IC时间的PP,并用偏光显微镜(POM)对其结晶形貌进行了表征。采用脉冲电声(PEA)方法测量样品的空间电荷分布,采用球板电极对样品进行异极直流预应力后的直流击穿强度。随着IC时间从0到10 min的增加,空间电荷的注入和积累明显受到抑制。加热时间为10 min的PP在异极性直流预应力作用下的直流击穿强度均明显高于非等温结晶样品。然而,进一步将集成电路时间延长至30 min,空间电荷注入和输运将大大加快,由于球晶尺寸较大,异极性直流预应力后的直流击穿强度降低。综上所述,集成电路可以提高球晶的完整性,减少非晶区缺陷,从而提高高压直流电缆pp基绝缘的电气性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Crystalline Morphology on DC-Prestressed Breakdown Characteristics of PP-based Cable Insulation
Polypropylene (PP) as a thermoplastic cable insulation material has the advantage of higher working temperature, better insulation performance and recyclability than traditional cross-linked polyethylene (XLPE). This work focuses on the effects of isothermal crystallization (IC) of PP on its electrical properties. PP with different IC time is prepared and their crystallization morphology is characterized by polarized optical microscopy (POM). The space charge distribution of the samples is measured by pulsed electro-acoustic (PEA) method, and the DC breakdown strength after the hetero-polar DC prestress of samples is carried out by the ball-plate electrode. With the IC time increasing from 0 to 10 min, the injection and accumulation of space charge is significantly inhibited. The DC breakdown strength with hetero-polar DC prestress of PP with an IC time of 10 min are both markedly higher than that of non-isothermal crystallized samples. Nevertheless, further increasing IC time to 30 min will accelerate the space charge injection and transport greatly, and the DC breakdown strength after hetero-polar DC prestress is reduced, due to large-sized spherulites. It is concluded that IC can improve the integrity of spherulites and reduce the defects in amorphous regions, thus improving the electrical performance of PP-based insulation for HVDC cables.
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