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Pulsed laser surface processing of alumina for high voltage power applications.

机译:用于高压电源的氧化铝的脉冲激光表面处理。

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摘要

As government and industry push for megawatt and gigawatt microwave pulsed power sources, modern vacuum tube technology must keep up. Insulating structures inside the vacuum tubes are key to the generation of these power levels. Surface flashover of the dielectrics, the limiting factor for high power applications, is theorized to be a function of trapped charge at the surface of the dielectric. Laser annealing via excimer laser is a process that shows promise in increasing the surface flashover voltage of dielectrics by removing surface defects. Through partial discharge and surface flashover testing of alumina ceramic dielectrics, the laser annealing process may be shown to be either valid or invalid as a means to control surface flashover. If proven valid, this could result in a new generation of high power vacuum tubes with breakdown strengths an order of magnitude greater than the current designs. The current set of experiments does not yield a definitive answer. The effect of conditioning and the initial uncontrolled screening tests have not been determined. Laser annealing does appear to reduce some of the "random" nature of surface flashover. A correlation between initial microdischarges and surface flashover is proposed. As this is a new and untested area of research, these results yield a greater understanding of the process by which surface flashover occurs.
机译:随着政府和行业推动兆瓦和千兆瓦微波脉冲电源的发展,现代真空管技术必须跟上发展。真空管内部的绝缘结构是产生这些功率水平的关键。电介质的表面闪络是高功率应用的限制因素,理论上被认为是电介质表面俘获电荷的函数。通过准分子激光器进行的激光退火是一种有望通过消除表面缺陷来提高电介质表面闪络电压的工艺。通过氧化铝陶瓷电介质的局部放电和表面飞弧测试,可以证明激光退火工艺作为控制表面飞弧的手段是有效的还是无效的。如果证明有效,则可能导致新一代高功率真空管的击穿强度比当前设计大一个数量级。当前的一组实验无法给出确切的答案。尚未确定调节的效果和最初的不受控制的筛选测试。激光退火确实可以减少表面闪络的某些“随机”性质。提出了初始微放电与表面闪络之间的相关性。由于这是一个未经测试的新研究领域,因此这些结果使人们对表面闪蒸发生的过程有了更深入的了解。

著录项

  • 作者

    Berkow, Joshua A.;

  • 作者单位

    State University of New York at Buffalo.$bElectrical Engineering.;

  • 授予单位 State University of New York at Buffalo.$bElectrical Engineering.;
  • 学科 Engineering Electronics and Electrical.; Engineering Materials Science.
  • 学位 M.S.
  • 年度 2008
  • 页码 104 p.
  • 总页数 104
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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