Research on space charge packet migration combining the electron beam irradiation technique and real-time space charge distribution measurement by piezo-PWP method

None Pan Jiaping, None Zhang Yewen, None Li Jun, None Lv Tihua, None Zheng Feihu
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Abstract

The space charge packet is a special sort of space charge phenomenon that is characterized by the migration of aggregated space charge in the form of a packet within the sample. Currently, most of the experimental and simulation studies on the generation and migration of space charge packets are focused on the space charge packets with positive polarity in polyethylene and its cross-linking products, while the characteristics of the space charge packets with negative polarity are yet to be studied. This paper presents an integrated experimental system for the researches on space charge packet with negative polarity, which enables experimental studies combining electron beam irradiation technique and real-time space charge distribution measurement. The beam flux for electron beam irradiation is controlled by a metal grid with an optical fiber-electric relay and the space charge distribution measurement is performed by the piezo- pressure wave propagation method. The system achieves a withstand voltage value of 17 kV and a measuring resolution of 25 ns for space charge distribution measurement and is suitable for experimental studies of various material samples with different thickness ranges under different electric fields. In this paper, the migration behavior of space charge packets with negative polarity in polypropylene (PP) and polymethyl methacrylate (PMMA) samples under different applied electric field (15-20-25-30 kV/mm) were studied using the experimental system. The relationship between the migration properties of carriers with negative polarity (electrons) and the electric field can be extracted from the experimental results. The "negative differential mobility" phenomenon was found for both materials, i.e., the migration rate decreases with the increase of the electric field. The threshold electric field for the "negative differential mobility" phenomenon of electrons in PP samples is about 26.0 kV/mm while the threshold electric field for the "negative differential mobility" phenomenon of electrons in PMMA samples is 19.5 kV/mm and the phenomenon disappears at an electric field of 27.5 kV/mm. The electric field where the "negative differential mobility" phenomenon of electrons appears and disappears within different materials can be extracted using the experimental system proposed in this paper.
结合电子束辐照技术和压电- pwp法实时空间电荷分布测量的空间电荷包迁移研究
空间电荷包是一种特殊的空间电荷现象,其特征是聚集的空间电荷以包的形式在样品内部迁移。目前,关于空间电荷包的产生和迁移的实验和模拟研究大多集中在聚乙烯及其交联产物中具有正极性的空间电荷包,而具有负极性的空间电荷包的特性尚未得到研究。本文提出了一种用于空间负极电荷包研究的集成实验系统,实现了电子束辐照技术与实时空间电荷分布测量相结合的实验研究。电子束辐照的束流由带光纤-电继电器的金属栅格控制,空间电荷分布采用压电压力波传播法测量。该系统可实现17 kV的耐压值和25 ns的空间电荷分布测量分辨率,适用于不同电场下不同厚度范围的各种材料样品的实验研究。本文利用实验系统研究了不同外加电场(15 ~ 20 ~ 25 ~ 30 kV/mm)下,负极空间电荷包在聚丙烯(PP)和聚甲基丙烯酸甲酯(PMMA)样品中的迁移行为。从实验结果中可以提取出负极性载流子(电子)的迁移特性与电场的关系。两种材料均存在“负微分迁移率”现象,即迁移率随电场的增大而减小。PP样品中电子“负微分迁移率”现象的阈值电场约为26.0 kV/mm, PMMA样品中电子“负微分迁移率”现象的阈值电场为19.5 kV/mm,电场为27.5 kV/mm时,电子“负微分迁移率”现象消失。利用本文提出的实验系统可以提取不同材料中电子“负微分迁移率”现象出现和消失的电场。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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