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纳米CuCr25合金的阴极斑点运动特性 被引量:6

Characteristics of Cathode Spot Motion on Nanocrystalline CuCr25 Alloy
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摘要 在超高真空(10-6Pa)条件下,利用高速摄影机观测常规及纳米CuCr25合金的阴极斑点运动。实验结果显示,常规CuCr25合金的阴极斑点运动局限于阳极正下方的Cr相上,而纳米CuCr25合金的阴极斑点可以运动到偏离阳极正下方较远处。Cr粒子尺寸的减小及相应的晶界的增加是造成阴极斑点运动巨大差异的主要原因。 The motion of cathode spots on coarse-grained and nanocrystalline CuCr25 under ultra-high vacuum condition were observed by a digital high speed video camera. The results show that the motion of spots on coarse-grained CuCr25 are restricted on Cr particle right opposed to the anode, while on nanocrystalline CuCr25, spots could reach places far from the position right opposed to the anode The novel difference of the motion of spots is due to the diminished particle size of Cr and the increase of the number of boundary.
机构地区 西安交通大学
出处 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2008年第4期641-643,共3页 Rare Metal Materials and Engineering
基金 国家自然科学基金(50471033)
关键词 阴极斑点 CUCR合金 高速摄影 cathode spot CuCr alloy high-speed video
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参考文献10

  • 1Juttner B. J Phys D: Appl Phys[J], 2001, 34:3
  • 2I Boxman R L et al. IEEE Trans Plasma Sci[J], 1997, 25:1175
  • 3Miller H C. IEEE Trans Electr Insul[J], 1990, 25:765
  • 4Lafferty J M. Vacuum Arcs, Theory and Application[M]. New York: Wiley, 1980
  • 5Juttner B. Plasma Physics and Controlled Fusion[J], 1984, 26(1A): 249
  • 6Sherman J C, Webster R, Jenkins J E et al.J Phys D: Appl Phys[J], 1975, 8:696
  • 7Sun Z et al. J Alloys Compd[J], 2003, 361:165
  • 8Gleiter H et al. Acta Mater[J], 2001, 49:737
  • 9Erhard Hantzsche. IEEE Transactions on Plasma Science[J], 2003, 31:799
  • 10Ding B J, Yang Z M, Wang X T. IEEE Trans Compon Packag Manuf Technol[J], 1996, 19:76

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