ß-晶体形成对丙烯-乙烯共聚物电性能的影响

W. Zhang, Man Xu, Kaiwen Huang, Q. Mu, George Chen
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引用次数: 1

摘要

本文将ß成核剂N, N ' -二环己基- 2,6 -萘二甲酰胺(TMB-5)与丙烯-乙烯共聚物(PEC)熔融共混,在PEe中生成ß-晶体。成核剂的含量为0.1 ~ 0.3 wt%。用广角x射线衍射仪、差示扫描量热仪对其晶体形态、结晶度进行了表征。通过热激电流测试、空间电荷测试和室温和90℃直流击穿测试来表征样品的电学性能。实验结果表明,TMB-5能在PEC中形成ß-晶体,且TMB-5的含量越多,ß-晶体含量越高。在室温和90℃下,掺量为0.1 wt%的13核PEC的直流击穿强度分别比纯PEC高17%和14%。纯PEC和含TMB-5的PEC没有明显的空间电荷积累。
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 the ß-Crystal Formation on Electrical Properties in Propylene-Ethylene Copolymer
In this paper, the ß nucleating agent, N, N’-dicyclohexyl-2, 6-naphthalenedicarboxamide (TMB-5), and propylene-ethylene copolymer (PEC) was melting blended to create the ß-crystal in PEe. The content of ß nucleating agent is from 0.1 to 0.3 wt%. The crystal form, crystallinity were characterized by wide angel X-ray diffractometer, differential scanning calorimeter. The thermal stimulated current test, space charge test and DC electrical breakdown test at room temperature and 90 □ were conducted to characterize the electrical properties of these samples. The experimental results show that the TMB-5 could form ß-crystal and more content of TMB-5 more ß-crystal in PEC. At room temperature and 90□, the DC electrical breakdown strength of 0.1 wt% content 13-nucleated PEC increased 17 % and 14 % higher than pure PEC. And there was no obvious space charge accumulated in pure PEC and PEC containing TMB-5.
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