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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >Surface breakdown phenomena in alumina rf windows
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Surface breakdown phenomena in alumina rf windows

机译:氧化铝射频窗的表面击穿现象

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摘要

The multipactor and flashover phenomena of alumina rf windows used in a high-power klystron have been investigated. Multipactoring due to the high yield of secondary electron emission takes place during rf operation. A spectrum analysis of luminescence due to multipactoring shows that multipactor electron bombardment causes F centers in alumina, thus leading to surface melting. From the results of a high-power examination of rf windows with several kinds of alumina ceramic, it was found that alumina with a crystallized grain boundary and without any voids between the boundaries, thus having a low loss tangent value, is not liable for F centers, even under multipactoring. Flashover in a tree-like pattern of alumina luminescence occasionally takes place on a TiN-coated surface where multipactoring is suppressed. A sapphire window, whose surface was polished and having pre-existing F centers, shows a lower flashover threshold. The annealing effect of polished window surfaces was also investigated.
机译:已经研究了在大功率速调管中使用的氧化铝rf窗口的倍增和闪络现象。由于二次电子发射的高产率,在射频操作过程中发生了多相放电。由于多峰导致的发光光谱分析表明,多峰电子轰击会导致氧化铝中的F中心,从而导致表面熔化。从对具有几种氧化铝陶瓷的射频窗进行的高功率检查的结果中发现,具有晶化晶界且边界之间没有任何空隙,因而损耗角正切值低的氧化铝对F不承担责任。中心,即使在多重指导下也是如此。氧化铝发光的树状图案中的飞弧偶尔会在TiN涂层表面上发生,从而抑制了多相放电。蓝宝石窗口的表面被抛光并具有预先存在的F中心,其闪络阈值较低。还研究了抛光窗户表面的退火效果。

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