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Impact of the Insulator on the Electric Field and Generation Characteristics of Vacuum Arc Metal Plasmas

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【作者】 刘文正王浩窦志军

【Author】 LIU Wenzheng;WANG Hao;DOU Zhijun;School of Electrical Engineering,Beijing Jiaotong University;

【机构】 School of Electrical Engineering,Beijing Jiaotong University

【摘要】 The field electron emission plays a vital role in the process of vacuum discharge breakdown. The electric field strength at the cathode tip is significant to the generation characteristics of vacuum arc metal plasmas. To increase the field strength at the cathode tip,a coaxial electrode plasma source was employed with an insulator settled between the electrodes.The math expression of the field strength is derived based on the Gauss theory. The impact of the insulator on the electric field and parameters of plasmas were investigated by MAXWELL 3DR simulation software and the Langmuir probe. In addition,a composite insulator was adopted to further strengthen the field strength. A series of experiments were performed to focus on the role of the composite insulator in detail. The experimental and simulation results indicate that,a reasonable layout of the insulator,especially the composite insulator,can effectively increase the field strength at the cathode tip and the plasma density.

【Abstract】 The field electron emission plays a vital role in the process of vacuum discharge breakdown. The electric field strength at the cathode tip is significant to the generation characteristics of vacuum arc metal plasmas. To increase the field strength at the cathode tip,a coaxial electrode plasma source was employed with an insulator settled between the electrodes.The math expression of the field strength is derived based on the Gauss theory. The impact of the insulator on the electric field and parameters of plasmas were investigated by MAXWELL 3DR simulation software and the Langmuir probe. In addition,a composite insulator was adopted to further strengthen the field strength. A series of experiments were performed to focus on the role of the composite insulator in detail. The experimental and simulation results indicate that,a reasonable layout of the insulator,especially the composite insulator,can effectively increase the field strength at the cathode tip and the plasma density.

【基金】 supported by the Scientific Research Starting Foundation for Returned Overseas Chinese Scholars,Ministry of Education,China(Nos.E07C30010 and EJ06014)
  • 【文献出处】 Plasma Science and Technology ,等离子体科学和技术(英文版) , 编辑部邮箱 ,2014年02期
  • 【分类号】O53
  • 【被引频次】5
  • 【下载频次】38
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