期刊文献+

纳米掺杂Ag/SnO_2触头材料的制备及电弧侵蚀性能研究 被引量:8

Preparation and arc erosion morphology of nano doping Ag/SnO_2 contact materials
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摘要 以CuO和La2O3为掺杂剂,采用高能球磨法制备掺杂纳米SnO2粉体,再采用热挤压工艺制成银含量88%的纳米掺杂Ag/SnO2触头材料,利用扫描电子显微镜、电导率测试仪、显微硬度计对该触头材料进行了微观组织表征及性能测试,随后,利用该触头材料在10A交流电流条件下进行电弧侵蚀性能测试.结果表明,触头材料中氧化物在银基体上分布均匀;Ag/SnO2触头材料的密度、硬度和电导率分别为9.704 1g/cm3,104.2和75;电弧烧蚀速率为103.65μg/C,并研究了熔层表面的微观组织结构. By high energy ball milling process,the doped nano-stannic anhydride(SnO2)powder was prepared with SnO2 as raw material,CuO and La2O3 as the doping agents.Then,the contact material,nano doped Ag/SnO2 with silver content 88% were prepared by the hot extrusion process.Furthermore,the microstructures of the three materials above were characterized by scanning electron microscopy,the conductivities,hardnesses of the contact materials were measured by the conductivity meter,the microhardness option and arc eroion test was tested under 10 AAC current.The properties data shows that the density,hardness and electrical conductivity of the Ag/SnO2 contact material are 9.704 1g/cm^3,104.2and 75,the arc erosion rate are 103.65μg/C,the microstructure of the erosion surface is also analyzed.
出处 《西安工程大学学报》 CAS 2014年第5期543-546,共4页 Journal of Xi’an Polytechnic University
基金 陕西省教育厅科学研究计划自然科学专项资助项目(14JK1314)
关键词 纳米 Ag/SnO2触头材料 热挤压电弧侵蚀 nano Ag/SnO2contact materials hot extrusion arc erosion
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参考文献12

  • 1LIU Xiang-mei,WU S L,PAUL K,et. al Effects of coating process on the characteristics of Ag-Sn()2 contact materials []]. Materials Chemistry and Physics, 2006,98 : 477-480.
  • 2VLADAN Cosovic,ALEKSANDAR Cosovic, NADEZDA Taliian.et al. Improving dispersion of SnO~ nanoparticles in Ag-SnO2 electrical contact materials using template mcthod[J]. Journal of Alloys and Compounds,2013(567):33-39.
  • 3ZHENG Ji LI Songlin DOU Fuqi LI Tonghui.Preparation and microstructure characterization of a nano-sized Ti^(4+)-doped AgSnO_2 electrical contact material[J].Rare Metals,2009,28(1):19-23. 被引量:24
  • 4LIN Zhi-jie,LIU Shao-hong,SUN Xu-dong,et al. The effects of citric acid on the synthesis and performance of silver- tin oxide electrical contact materials[J]. Journal of Alloys and Compounds,2014,558:30-35.
  • 5MILENKO B, VALERY V K, NIKOLAI K M. Electrical contacts fundamentals applications and technology[M]. New York: CRC Press, 2006 : 71-148.
  • 6MAREK Galanty, PAWEL Kazanowski,PANYA Kansuwan, et M. Consolidation of metal powders during the extrusion process[J]. Journal of Materials Science and Engineering A Processing Technology,2002,125-126:491-496.
  • 7XU Can-hui,YI Dan-qing,WU Chun-ping,et al. Microstructures and properties of silver-based contact material fabrica- ted by hot extrusion of internal oxidized Ag-Sn-Sb alloy powders[J]. Materials Science and Engineering A, 2012,538.. 202-209.
  • 8WANG Jun-bo,ZHANG Yan,YANG Min-ge,et al. Observation of arc discharging process of nanocomposite Ag-SnO2 and La-doped Ag-SnO2 contact with a high-speed camera[J]. Materials Science and Engineering B,2006,131..230-234.
  • 9WANG Jun,LIU Wei, LI Dong-mei,et al. The behavior and effect of CuO in Ag/SnO~ materials[J]. Journal of Alloys and Compounds, 2014,558 : 378-383.
  • 10JEMAA N B. Contacts conduction and switching in DC levels[C]//Proceedings of 48th IEEE Holm Conference on E- lectric Contacts. Orlando.. IEEE, 2002 : 1-15.

二级参考文献18

  • 1Yasuyoshi S., Hisaaki T., Toshihiko T., Tatsuhiko N., Kazu- masa T., Takahiko H., Toshiatsu N., and Masaya N., Lead-free piezoelectrics, Nature, 2004, 432: 84.
  • 2Leung C., Eric S., and Dermis F., Weibull analysis of switching contact resistance in laboratory and commercial circuit breakers, [in] Proceedings of the 53th IEEE Holm Conference on Electrical Contacts, Pittsburgh, 2007: 56.
  • 3Choi W.J., Reliability of Pb-free Solders in Electronic Packaging Technology [Dissertation], University of California, Los Angeles, 2002: 16.
  • 4Liu L.B., Cristina A., and Johan L., Thermodynamic assessment of the Sn-Co lead-free solder system, J. Electron Mater., 2004, 33: 935.
  • 5Liu Y., Li Z.Y., and Li J.H., IrO2/SnO2 electrodes: prepared by sol-gel process and their electrocatalytic for pyrocatechol, Acta Mater. (in Chinese), 2004, 52: 721.
  • 6Lopez-Navarrete E., Caballero A., Orera V.M., Lazaro F.J., and Ocana M., Oxidation state and localization of chromium ions in Cr-doped cassiterite and Cr-doped malayaite, Acta Mater., 2003, 51: 2372.
  • 7Garima J. and Kumar R., Electrical and optical properties of tin oxide and antimony doped tin oxide films, Opt. Mater., 2004, 26: 27.
  • 8Miao H.Y., Ding C.S., and Luo H.J., Antimony-doped tin dioxide nanometer powders prepared by the hydrothermal method, Microelectron Eng. (in Chinese), 2003, 66: 142.
  • 9Lee K.M., Lee D.J., and Ahn H., XRD and TEM studies on tin oxide (II) nanoparticles prepared by inert gas condensation, Mater. Lett., 2004, 58:3122.
  • 10Ewa B., Wettability studies of cubic boron nitride by silver-titanium, Ceram. Int., 1995, 21: 303.

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