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恒流电晕充电对聚四氟乙烯多孔薄膜驻极体驻极态的影响
引用本文:吴越华,夏钟福,安振连,王飞鹏,邱勋林. 恒流电晕充电对聚四氟乙烯多孔薄膜驻极体驻极态的影响[J]. 物理学报, 2004, 53(9): 3146-3151
作者姓名:吴越华  夏钟福  安振连  王飞鹏  邱勋林
作者单位:同济大学波尔固体物理研究所,上海 200092
基金项目:国家自然科学基金(批准号:50073016)和中德驻极体合作课题(批准号:Ref. I/77365)资助的课题.
摘    要:利用常温下恒流和恒压电晕充电、充电后的等温表面电位衰减、热刺激放电和扫描电镜等实 验手段研究了恒流和恒压电晕充电技术对聚四氟乙烯多孔薄膜驻极体驻极态的影响.与恒压电晕充电相比较,恒流电晕充电时由于流过薄膜的电流恒定,增加了注入电荷在多孔结构厚度方向界面处的俘获概率,使沉积电荷密度上升,改善了驻极体的储电能力.然而,这些位于不同层深多孔界面处的俘获电荷在这类功能膜储存或使用过程中,经外激发从脱阱位置 以跳动(hopping)模式输运至背电极的路径相对缩短将导致脱阱电荷衰减较快.关键词:恒流电晕充电聚四氟乙烯多孔膜驻极体电荷稳定性

关 键 词:恒流电晕充电  聚四氟乙烯多孔膜  驻极体  电荷稳定性
文章编号:1000-3290/2004/53(09)/3146-06
收稿时间:2003-09-02

Influence of constant-current corona charging on electret state of porous PTFE film electret
Wu Yue-Hu,Xia Zhong-Fu,An Zhen-Lian,Wang Fei-Peng and Qiu Xun-Lin. Influence of constant-current corona charging on electret state of porous PTFE film electret[J]. Acta Physica Sinica, 2004, 53(9): 3146-3151
Authors:Wu Yue-Hu  Xia Zhong-Fu  An Zhen-Lian  Wang Fei-Peng  Qiu Xun-Lin
Abstract:The influence of constant current and constant voltage corona charging technique on the electret state of porous polytetrafluoroethylene(PTFE) film electret has been studied by constant current and constant voltage corona charging at room temperature, isothermal surface potential decay, thermally stimulated discharge(TSD) and SEM(scanning electron microscope), etc. Compared to the constant voltage corona charging, the current through films is constant during constant current charging, therefore, the trapping possibility along the thickness direction of porous structure increases and the charge density goes up, which improves the charge storage ability of the electret. However, the charges trapped in the dielectric surfaces of the interfaces with different depths along the thickness of the sample are externally stimulated during storage or application, their transport paths to the back electrode from the trapping positions are relatively shorter according to the hopping model of the charges, therefore the charge decay is accelerated and the charge stability is decreased.
Keywords:constant-current corona charging  porous PTFE  electret  charge stability
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