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首页> 外文期刊>Plasmas and polymers >Nanosecond Surface Corona Discharge for Different Types of Strip Electrodes and Ceramic or Polymer Dielectrics
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Nanosecond Surface Corona Discharge for Different Types of Strip Electrodes and Ceramic or Polymer Dielectrics

机译:不同类型的带状电极和陶瓷或聚合物电介质的纳秒表面电晕放电

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摘要

Surface corona discharge characteristics from single-stripped and multi-stripped electrodes on the surface of thin dielectric plates of different kinds of ceramics and polymers are presented. Experimental results are obtained with voltage pulses of microsecond and nanosecond duration and they show significant difference in the values of the inception voltage, the discharge structure and current impulse amplitude for different barrier materials. Analysis of calculated and experimental values of the inception voltage is given, and it shows that beside electrical characteristics such as the relative permittivity ε and the specific resistance of the barrier material. The surface properties of the barrier, its thickness and its structure play a significant role in the discharge appearance and development. Nanosecond applied voltage pulses give a more dense and uniform discharge structure than microsecond ones, other conditions being equal.
机译:提出了在不同类型的陶瓷和聚合物薄介电板表面上的单条和多条电极的表面电晕放电特性。用微秒和纳秒持续时间的电压脉冲获得的实验结果表明,对于不同的阻挡层材料,起始电压,放电结构和电流脉冲幅度的值存在显着差异。给出了初始电压的计算值和实验值的分析结果,结果表明,除了介电常数ε和阻隔材料的电阻率等电特性外,还存在其他一些问题。阻挡层的表面性质,其厚度和结构在放电外观和发展中起着重要作用。在其他条件相同的情况下,纳秒施加的电压脉冲会比微秒的电压脉冲提供更密集和均匀的放电结构。

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