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sPP含量对PP共混电缆绝缘中电树生长特性的影响

Effect of sPP Content on Electrical Tree Growth Characteristics in PP-Blended Cable Insulation.

作者信息

Zhou Shuofan, Yu Fan, Yang Wei, Li Zhonglei, Xing Zhaoliang, Fan Mingsheng, Han Tao, Du Boxue

机构信息

State Key Laboratory of Advanced Power Transmission Technology, Global Energy Interconnection Research Institute Co. Ltd., Beijing 102209, China.

School of Electrical and Information Engineering, Tianjin University, Tianjin 300072, China.

出版信息

Materials (Basel). 2020 Nov 26;13(23):5360. doi: 10.3390/ma13235360.

Abstract

This paper aims at investigating the electrical tree characteristics of isotactic polypropylene (iPP)/syndiotactic polypropylene (sPP) blends for thermoplastic cable insulation. PP blended samples with sPP contents of 0, 5, 15, 30, and 45 wt% are prepared, and electrical treeing experiments are implemented under alternating current (AC) voltage at 50, 70, and 90 °C. Experimental results show that with the incorporation of sPP increasing to 15 wt%, the inception time of electrical tree increases by 8.2%. The addition of sPP by 15% distinguishes an excellent performance in inhibiting electrical treeing, which benefits from the ability to promote the fractal dimension and lateral growth of branches. Further increase in sPP loading has a negative effect on the electrical treeing resistance of blended insulation. It is proved by DSC and POM that the addition of sPP promotes the heterogeneous crystallization the of PP matrix, resulting in an increasing density of interfacial regions between crystalline regions, which contains charge carrier traps. Charges injected from an electrode into a polymer are captured by deep traps at the interfacial regions, thus inhibiting the propagation of electrical tree. It is concluded that the modification of crystalline morphology by 15 wt% sPP addition has a great advantage in electrical treeing resistance for PP-based cable insulation.

摘要

本文旨在研究用于热塑性电缆绝缘的等规聚丙烯(iPP)/间规聚丙烯(sPP)共混物的电树特性。制备了sPP含量分别为0、5、15、30和45 wt%的PP共混样品,并在50、70和90°C的交流(AC)电压下进行了电树实验。实验结果表明,随着sPP含量增加到15 wt%,电树起始时间增加了8.2%。添加15%的sPP在抑制电树方面表现出优异的性能,这得益于其促进分支分形维数和横向生长的能力。sPP负载量的进一步增加对共混绝缘的耐电树性能有负面影响。DSC和POM证明,sPP的添加促进了PP基体的异质结晶,导致结晶区域之间界面区域的密度增加,该区域包含电荷载流子陷阱。从电极注入聚合物的电荷被界面区域的深陷阱捕获,从而抑制了电树的传播。得出的结论是,添加15 wt%的sPP对结晶形态的改性在基于PP的电缆绝缘的耐电树性能方面具有很大优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a807/7729507/0ccd2a6ce42d/materials-13-05360-g001.jpg

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