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首页> 外文期刊>Journal of materials science >Crosslinking dependence of trap distribution and breakdown performance of crosslinked polyethylene
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Crosslinking dependence of trap distribution and breakdown performance of crosslinked polyethylene

机译:陷阱分布的交联依赖性和交联聚乙烯的分解性能

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摘要

The DC breakdown performance and trap distribution of crosslinked polyethylene (XLPE) with different crosslinking degrees were investigated in this paper. Results demonstrate that the breakdown strength initially rises from 276 to 352 kV/ mm, followed by a decline to 300 kV/mm with the increase of crosslinking degree from 0 to 79.5%. The peak value occurs at the crosslinking degree of 52.1%. The deep trap density determined by isothermal surface potential decay (ISPD) displays a similar trend, sharing a same turning point with breakdown strength. In addition, an increasing crosslinking degree will lead to a lower crystallinity and an expanding amorphous region, while the content of by-products shows no obvious difference in XLPE samples due to the degassing process. It is therefore proposed that the crosslinking process can change the morphology of XLPE and influence the trap distribution. The formation of crosslinking network will increase the deep trap density, whereas the expanding amorphous region will result in the decrease of it. The increased deep trap density can cause homo-charges accumulation near the surface of XLPE and further suppress the charges injection from electrode. On the other hand, the charges in the bulk are easier to be captured and thus retard the charge transport. Dual dynamic processes contribute to the promotion of breakdown performance for XLPE.
机译:研究了交联度不同的交联聚乙烯(XLPE)的直流击穿性能和陷阱分布。结果表明,击穿强度最初从276 kV / mm升高到352 kV / mm,然后随着交联度从0升高到79.5%降至300 kV / mm。峰值出现在52.1%的交联度。由等温表面电势衰减(ISPD)确定的深阱密度显示出相似的趋势,具有相同的转折点和击穿强度。另外,交联度的提高将导致较低的结晶度和扩大的非晶区,而副产物的含量由于脱气过程而在XLPE样品中没有显示出明显的差异。因此,提出交联过程可以改变XLPE的形态并影响陷阱的分布。交联网络的形成将增加深阱的密度,而膨胀的非晶区将导致其减小。增大的深陷阱密度可导致XLPE表面附近的均电荷积累,并进一步抑制从电极注入的电荷。另一方面,主体中的电荷更容易被捕获,因此阻碍了电荷的传输。双重动态过程有助于提高XLPE的击穿性能。

著录项

  • 来源
    《Journal of materials science 》 |2019年第23期| 20605-20613| 共9页
  • 作者单位

    State Key Laboratory of Electrical Insulation and Power Equipment Xi'an Jiaotong University Xi'an 710049 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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