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针板结构介质阻挡放电微放电特性研究

Investigation on the Micro-Discharge Characteristics of Dielectric Barrier Discharge in a Needle-Plate Geometry

  • 摘要: 本文采用光学方法, 利用针板结构的介质阻挡放电装置对大气压氩气中的微放电特性进行了研究。结果表明该类型的介质阻挡放电有两个模式, 电晕放电模式和丝状放电模式。当外加电压很低时候放电仅出现在针尖附件, 此为电晕模式。然而当外加电压达到一定数值, 微放电将连接两个电极, 此时为丝模式。微放电在介质板上的扩展面积随着外加电压增加而增大, 随着气压减小而增大。实验研究了放电发光信号随着外加电压的变化关系。结果表明电晕放电模式中仅有很窄的放电脉冲出现在外加电压的负半周期。然而, 在丝状放电模式当电压很高时, 很宽的包络 (大约几个微秒)在外加电压的正负半周都出现。并且随着外加电压增加, 放电起始电压减小, 放电包络的宽度增加。这些实验现象均通过分析放电机理得到了解释。

     

    Abstract: In this study, a dielectric barrier discharge device with needle-plate electrodes was used to investigate the characteristics of the micro-discharge in argon at one atmospheric pressure by an optical method. The results show that there are two discharge modes in the dielectric barrier discharge, namely corona mode and filamentary mode. The corona discharge only occurs in the vicinity of the needle tip when the applied voltage is very low. However, the filamentary discharge mode can occur, and micro-discharge bridges the two electrodes when the applied voltage reaches a certain value. The extended area of micro-discharge on the dielectric plate becomes larger with the increase in applied voltage or decrease in gas pressure. The variance of the light emission waveforms is studied as a function of the applied voltage. Results show that very short discharge pulse only appears at the negative half cycle of the applied voltage in the corona discharge mode. However, broad hump (about several microseconds) can be discerned at both the negative half cycle and the positive half cycle for a high voltage in the filamentary mode. Furthermore, the inception voltage decreases and the width of the discharge hump increases with the increase in applied voltage. These experimental phenomena can be explained qualitatively by analyzing the discharge mechanism.

     

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