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高功率脉冲氙灯铈钨电极工作过程中表面稀土元素分布和价态演变
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中国科学院上海光学精密机械研究所

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国防科技基金资助


Evolution of Surface Morphorlogy and Cerium Element distribution of the cerium–tungsten electrode in High-power Pulsed Xenon Lamp during Operation
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    摘要:

    阐明高功率脉冲氙灯钨电极运行过程中的演变过程及工作机理,采用金相显微镜、扫描电镜(SEM)X-射线光电子能谱(XPS)等手段研究了运行不同发次的高功率脉冲氙灯阴极表面形貌、元素的价态演变及其浓度-深度分布状况,结果表明钨电极工作表面出现大量的龟裂纹,其裂纹程度和深度、烧蚀状况均与运行发次有关,工作次数越多裂纹和烧蚀情况越严重随着运行发次增加,阴极表面元素含量向表面扩散,含量升高,最高达12%,分布更加均匀通过对Ce3+/Ce4+比例分析发现运行10083发次的钨阴极表面活性处于较佳状态运行14486发次的钨阴极表面活性层明显减小,仅有6.66nm,氙灯性能处于下降状态

    Abstract:

    In order to illustrate the evolution process and working mechanism of the cerium–tungsten electrode of the high-power pulsed xenon lamp during operation, the cathode surface morphology of the high-power pulsed xenon lamp running for different times, the evolution of the valence state of cerium and its concentration–depth distribution have been studied using a metallurgical microscope, scanning electron microscope (SEM), X-ray photoelectron spectroscopy (XPS) and other methods. The results show that a large number of cracks and ablation of different degrees appear on the working surface of the cerium–tungsten electrode; the degree and depth of the cracks and the ablation depend on the running times; and the crack and ablation are more serious with more working times. As the running time increases, the cerium on the cathode surface diffuses to the working surface of the cerium–tungsten electrode, with the content of cerium increased for a uniform distribution. Through the analysis of Ce3+/ Ce4+ ratio, it has found that the surface activity of the cerium–tungsten cathode running 6466 and 10083 times is in a better state; and the surface activity layer of the cerium–tungsten cathode running 14486 times is significantly reduced, and the electrode is approaching its service life.

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郭向朝,刘作娇,李海兵,刘建军,胡丽丽.高功率脉冲氙灯铈钨电极工作过程中表面稀土元素分布和价态演变[J].稀有金属材料与工程,2022,51(5):1879~1886.[Guo Xiangchao,刘作娇,Li Haibing, Liu Jiangjun, Hu Lili. Evolution of Surface Morphorlogy and Cerium Element distribution of the cerium–tungsten electrode in High-power Pulsed Xenon Lamp during Operation[J]. Rare Metal Materials and Engineering,2022,51(5):1879~1886.]
DOI:10.12442/j. issn.1002-185X.20210187

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  • 收稿日期:2021-03-08
  • 最后修改日期:2021-11-24
  • 录用日期:2022-01-29
  • 在线发布日期: 2022-06-09
  • 出版日期: 2022-05-30