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Coating properties which increase the vacuum flashover strength of insulators.

机译:涂层性能可提高绝缘子的真空闪络强度。

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摘要

The surface flashover strengths in vacuum for several common insulators, including Lexan, Lucite, polyethylene, Macor, quartz, alumina, and an alumina-filled epoxy, have been increased using a vacuum spark discharge treatment. Analysis of the treated surfaces using Electron Spectroscopy for Chemical Analysis (ESCA) show them to be coated with a thin hydrocarbon/metal oxide layer. The formation of this high-flashover coating is strongly dependent on the amount of water vapor in the chamber during treatment. Measurements of the secondary electron emission coefficient (SEEC) show that the treated surfaces produce many more secondary electrons at energies of a few keV than do untreated samples. In current theories of electrical breakdown, an avalanche of monoenergetic secondary electrons along the dielectric surface from the cathode to the anode is believed to cause gas desorption and initiate a surface flashover. A new theory is proposed in which the monoenergetic nature of this secondary electron avalanche is destroyed due to electron-gas molecule collisions before the onset of breakdown. This phenomenon, coupled with the larger number of secondaries produced at high energies, could lead to a modified charge distribution on the surface of the treated insulators, which delays the breakdown process.
机译:使用真空火花放电处理可以提高几种常见绝缘体在真空中的表面闪络强度,这些绝缘体包括Lexan,Lucite,聚乙烯,Macor,石英,氧化铝和氧化铝填充的环氧树脂。使用化学分析电子光谱法(ESCA)对处理过的表面进行分析后,发现它们表面覆盖有薄薄的碳氢化合物/金属氧化物层。这种高闪络涂层的形成在很大程度上取决于处理期间腔室中水蒸气的量。二次电子发射系数(SEEC)的测量表明,经过处理的表面在几keV的能量下比未经处理的样品产生更多的二次电子。在当前的电击穿理论中,沿电介质表面从阴极到阳极的大量单能二次电子被认为引起气体解吸并引发表面闪络。提出了一种新的理论,其中该二次电子雪崩的单能性质由于击穿开始之前的电子-气体分子碰撞而被破坏。这种现象,再加上在高能量下产生的大量次级,可能导致处理过的绝缘子表面电荷分布发生变化,从而延迟了击穿过程。

著录项

  • 作者

    Leiker, Gary Robert.;

  • 作者单位

    Texas Tech University.;

  • 授予单位 Texas Tech University.;
  • 学科 Physics General.
  • 学位 Ph.D.
  • 年度 1988
  • 页码 111 p.
  • 总页数 111
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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