Space charge behavior of linear low density polyethylene doped with some types of inorganic nano powder

Shujuan Hao, F. Zheng, Wenyan Wang, Chun Xiao, Z. An, Yewen Zhang
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引用次数: 5

Abstract

Packet-like space charge behavior and the isothermal decay processes of the injected charge in the neat linear low density polyethylene (LLDPE) and LLDPE doped with Al2O3 nano-particles is investigated by Pressure Wave Propagation (PWP) method. The 1 mm sheet samples sandwiched by semi-conductive electrodes are submitted to 40 kVdc/mm at 40degC for various duration. The charge injecting rate and the mobility of packet-like space charge under DC stress are compared among the samples subjected to different blending process with or without nano-particles. The slight doping concentration shows significant influence on space charge dynamics, being lower injecting rate and apparent mobility for higher doped samples. The isothermal decay process of the injected charge indicates the trap-modulated feature. The phenomena are related to the changing morphology.
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几种无机纳米粉体掺杂线性低密度聚乙烯的空间电荷行为
采用压力波传播(PWP)方法研究了纯线性低密度聚乙烯(LLDPE)和Al2O3纳米粒子掺杂LLDPE中包状空间电荷行为和注入电荷的等温衰减过程。将1 mm的薄片样品夹在半导电电极中,在40℃条件下以40 kVdc/mm的电压持续不同时间。比较了不同混合工艺的样品在直流应力下的电荷注入速率和包状空间电荷的迁移率。微掺杂浓度对空间电荷动力学有显著影响,高掺杂样品的注入速率较低,表观迁移率较高。注入电荷的等温衰减过程显示出陷阱调制的特征。这些现象与形态的变化有关。
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