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首页> 外文期刊>The European physical journal. Applied physics >The effects of cathode electrodeposited polymer film on the long vacuum gap breakdown
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The effects of cathode electrodeposited polymer film on the long vacuum gap breakdown

机译:阴极电沉积聚合物膜对长真空间隙击穿的影响

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Vacuum surface discharge is one of the most important issues for vacuum insulation. In this paper, a method for breakdown field strength enhancement of long vacuum gap is put forward, through depositing polymer dielectric coating on the electrode surface. The physical mechanism that the polymer film changes the electrode surface state is analyzed. After a layer of polymer film is deposited on the electrode surface, the decreased surface field strength and improved micro-surface state both help to suppress the field electron emission from the cathode. The technique of cathode electrodeposition for high polymers such as epoxy resin (ER), epoxy acrylate (EA), polyimide (PI) and poly(ether-ether-ketone) (PEEK) was explored, and the thickness of the electrodeposited coating can reach 20–50?μm. The effects of the electrodeposited polymer coatings of electrodes on the 2.5?cm vacuum gap breakdown were studied under a high-voltage vacuum experiment platform. Experimental results showed that when ER, EA and PEEK coatings with thickness of 25–45?μm were respectively electrodeposited on the 95?cm~(2)plate cathode, the initial-breakdown field strengths of the 2.5?cm vacuum gap were enhanced by 20.7%–22.4%. The enhancement of the initial-breakdown field strength was restricted by the coating defects, grain boundary defects on the cathode surface, and the micro-triple-point emission after the fusing of some local coating points due to the electron bombardments.
机译:真空表面放电是真空绝缘的最重要问题之一。在本文中,通过在电极表面上沉积聚合物介电涂层,提出了一种用于击穿长真空间隙的击穿场强度增强。分析了聚合物膜改变电极表面状态的物理机理。在将一层聚合物膜沉积在电极表面上之后,降低的表面场强度和改进的微表面状态都有助于抑制来自阴极的现场电子发射。探讨了高聚物的阴极电沉积,如环氧树脂(ER),环氧丙烯酸酯(EA),聚酰亚胺(PI)和聚(醚 - 醚 - 酮)(PEEK)的高聚物电沉积,并且电沉积涂层的厚度可以达到20-50?μm。在高压真空实验平台下研究了电极电极电极电极涂层对2.5Ω真空差距击穿的影响。实验结果表明,当厚度为25-45Ωμm的ER,EA和PEEK涂层分别在95Ω·(2)板阴极上被电沉积,增强了2.5·cm真空间隙的初始击穿场强度20.7%-22.4%。初始损伤场强的增强受到阴极表面上的涂层缺陷,晶界缺陷的限制,并且由于电子轰炸而融合一些局部涂布的微三点发射。

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    Science and Technology on High Power Microwave Laboratory Northwest Institute of Nuclear Technology P.O. Box 69 Branch 13 Xi’an 710024 PR China;

    Science and Technology on High Power Microwave Laboratory Northwest Institute of Nuclear Technology P.O. Box 69 Branch 13 Xi’an 710024 PR China;

    Science and Technology on High Power Microwave Laboratory Northwest Institute of Nuclear Technology P.O. Box 69 Branch 13 Xi’an 710024 PR China;

    Science and Technology on High Power Microwave Laboratory Northwest Institute of Nuclear Technology P.O. Box 69 Branch 13 Xi’an 710024 PR China;

    Science and Technology on High Power Microwave Laboratory Northwest Institute of Nuclear Technology P.O. Box 69 Branch 13 Xi’an 710024 PR China;

    Science and Technology on High Power Microwave Laboratory Northwest Institute of Nuclear Technology P.O. Box 69 Branch 13 Xi’an 710024 PR China;

    Science and Technology on High Power Microwave Laboratory Northwest Institute of Nuclear Technology P.O. Box 69 Branch 13 Xi’an 710024 PR China;

    Science and Technology on High Power Microwave Laboratory Northwest Institute of Nuclear Technology P.O. Box 69 Branch 13 Xi’an 710024 PR China;

    Science and Technology on High Power Microwave Laboratory Northwest Institute of Nuclear Technology P.O. Box 69 Branch 13 Xi’an 710024 PR China;

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  • 正文语种 eng
  • 中图分类 物理学 ;
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