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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >Vacuum Electrical Breakdown Characteristics and Surface Condition of Ti Electrodes with Oxidation Conditions
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Vacuum Electrical Breakdown Characteristics and Surface Condition of Ti Electrodes with Oxidation Conditions

机译:氧化条件下钛电极的真空电击穿特性和表面条件

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Outgassing from an electrode surface is regarded as a major factor leading to electrical breakdowns in vacuum. Recently oxidation treatment at 200℃ was reported as an effective means of reducing Ti outgassing. In this paper, we report our measurement and comparison of the electrical breakdown characteristics of Ti electrodes with different oxidation conditions (without oxidation, oxidation at 200℃, oxidation at 450℃). In addition, we analyzed electrode surfaces before and after breakdown experiments in situ with X-ray photoelectron spectroscopy (XPS). Before oxidation, we machined the electrode's surfaces to the roughness of 0.8μm Rmax with diamond turning. Breakdown experiments demonstrated that the breakdown field is highest at the first application of voltage to electrodes with oxidized at 200℃. Before breakdown experiment, surface analysis revealed that all the sample electrodes had a large amount of carbon originating from the hydrocarbons of contaminants, and after the experiments, they revealed that the carbons had disappeared. To obtain breakdown characteristics of electrodes with smoother surfaces, we conducted experiments on electrodes with a surface roughness of 0.05μm Ra. For these electrodes, the breakdown field was higher at first breakdown; the repetitions required to achieve saturated breakdown fields were significantly fewer, and the amount of carbon on electrode surfaces before breakdown was less.
机译:电极表面的脱气被认为是导致真空中电击穿的主要因素。据报道,最近在200℃进行氧化处理是减少Ti脱气的有效方法。在本文中,我们报告了我们在不同氧化条件下(无氧化,200℃氧化,450℃氧化)对钛电极电击穿特性的测量和比较。此外,我们使用X射线光电子能谱(XPS)对击穿实验前后的电极表面进行了分析。在氧化之前,我们通过金刚石车削将电极的表面加工到Rmax的粗糙度为0.8μm。击穿实验表明,在200℃氧化的电极上首次施加电压时,击穿场最高。在击穿实验之前,表面分析表明所有样品电极都有大量的碳,这些碳源自污染物的碳氢化合物,而在实验之后,他们发现碳已经消失了。为了获得具有更光滑表面的电极的击穿特性,我们在表面粗糙度为0.05μmRa的电极上进行了实验。对于这些电极,第一次击穿时击穿场较高;达到饱和击穿场所需的重复次数显着减少,击穿前电极表面的碳含量也减少了。

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