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Effects of bulk doping on surface insulating performance of alumina ceramic in vacuum

机译:体掺杂对真空中氧化铝陶瓷表面绝缘性能的影响

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摘要

The voltage hold-off capability of 95% alumina insulator in vacuum is usually less than that of a similar-sized vacuum gap and also is far below its dielectric breakdown strength, due to its low surface flashover strength. In this work, bulk doping was taken into consideration to modify the surface of 95% alumina in hope to improve its insulating property in vacuum and satisfying results were achieved. The as-blended 95% alumina powder was selected as initial powder to be doped with oxides combination such as MnCO3, Cr2O3, MgO and TiO2 separately or combinatorially. Conventional manufacturing procedures were applied for preparing all ceramic samples. Samples doped with proper Cr2O3 and MgO and those doped with proper MnCO3 and Cr2O3 were found to possess higher surface hold-off voltage than the original 95% alumina. It was pointed out through properties measurements that proper bulk doping was effective to reduce both the secondary electron emission (SEE) coefficient and surface resistivity of 95% alumina and so to enhance its surface insulating ability.
机译:95%氧化铝绝缘子在真空中的电压保持能力通常小于类似尺寸的真空间隙,并且由于其低表面闪络强度而远低于其介电击穿强度。在这项工作中,考虑到大量掺杂来修饰95%氧化铝的表面,以期改善其在真空中的绝缘性能并获得令人满意的结果。选择混合后的95%氧化铝粉末作为初始粉末,分别或组合掺入MnCO3,Cr2O3,MgO和TiO2等氧化物组合。采用常规制造程序制备所有陶瓷样品。发现掺有适当Cr2O3和MgO的样品以及掺有适当MnCO3和Cr2O3的样品具有比原始95%氧化铝更高的表面保持电压。通过性能测试表明,适当的体掺杂可以有效降低95%氧化铝的二次电子发射(SEE)系数和表面电阻率,从而提高其表面绝缘能力。

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