欢迎登录材料期刊网

材料期刊网

高级检索

对熔桥基本行为的研究一直是电接触领域的重点,本研究系统总结柚熔桥的基础枞论,主要实验和测试手段,主要模拟研究的手段,以及国内外研究者多年来在熔桥方面取得的重要成果,总结柚熔桥研究中特别是贵金属基电接触材料研究中未解决的基础问题,简要介绍柚本单位的相关研究成果,最后展望柚熔桥研究的发展方向和应用前景。

The molten bridge is a key problem in the research of electric contact materials.This study summarized the basic theory of the molten bridge, main experiment and test methods, the main simulation methods, and the researchers for many years in the molten bridge has made important achievements. The unresolved problems of molten bridge in the research of precious metal base electrical contact materials were listed, and then briefly introduce the related research achievements of Kunming institute of precious metals, finally prospects the research direction and application prospects of molten bridge.

参考文献

[1] Holm R.Electric contacts:theory and application[M].Springer Science & Business Media,2013
[2] 程礼椿.电接触理论及应用[M].北京:机械工业出版社,1988
[3] 荣命哲.电接触理论[M].北京:机械工业出版社,2004
[4] 刘先曙.电接触材料的研究和应用[M].北京:国防工业出版社,1979
[5] 刘金友,王茜,杨晓铖,李震彪,蔡冰冰,王丹江.电触点分离液桥研究概述[J].电工材料,2014(06):29-34.
[6] 张鑫赟,薄凯,周学,陈默,翟国富.触头分断金属液桥侵蚀现象分析[J].电器与能效管理技术,2015(07):1-6,43.
[7] Davidson P M .The growth of the liquid bridge in an electrical contact[J].British Journal of Applied Physics,1954(5):189.
[8] Jones F L .The physics of electrical contact phenomena[J].British Journal of Applied Physics,1961,12(7):318-322.
[9] Lander J J;Germer L H .The bridge erosion of electrical contacts. Part I[J].Journal of Applied Physics,1948,19(10):910-928.
[10] Utsumi T .Theoretical and experimental investigations of dynamic molten bridge[J].IEEE Trans on Parts Material and Packing,1969,PMO-5(1):62-68.
[11] Hiroyuki ISHIDA;Shosuke SUZUKI;Hideaki SONE;Hiroshi INOUE;Masanari TANIGUCHI;Tasuku TAKAGI .Formation Mechanism of Dark Bridge between Contacts with Very Slow Opening Speed[J].IEICE transactions on electronics,2006(8):1136-1140.
[12] Ishida H;Taniguchi M;Takagi T.Precise measurement of dark bridge between micro-gap electrical contacts in a state of thermal equilibrium condition[A].,2005:1301-1306.
[13] 张鑫赟,陈默,周学,翟国富,梁安生.触点金属液桥试验系统的研究[J].低压电器,2014(04):46-50.
[14] 李慕阳,陈松,谢明,郭俊梅,马俊,吴建昆,任县利,胡洁琼,王塞北.高速摄像技术在材料科学研究中的应用和发展[J].贵金属,2014(z1):175-180.
[15] 谭志龙,郭俊梅,陈松,管伟明.电接触现象数值模拟的研究现状及发展趋势[J].电工材料,2010(01):3-8.
[16] Tan Z L;Guan W M;Guo J M et al.Mechanical, electrical, and thermal coupled-field simulation of a molten metal bridge during contact separation[J].IEEE Transactions on Components Packaging and Manufac-turing Technology,2013,3(6):960-966.
[17] 郭迎春,耿永红,陈松,张昆华,管伟明.电触点直流电侵蚀研究[J].稀有金属材料与工程,2007(z3):264-268.
[18] 荣命哲,娄建勇,王小华.永磁式接触器动触头动作特性仿真分析与试验研究[J].中国电机工程学报,2005(01):109-113.
[19] 吴细秀,李震彪.电器电极材料喷溅侵蚀的理论计算[J].中国电机工程学报,2003(06):96-101.
[20] 翟国富,孙韬,任万滨.继电器触点分断过程瞬态热场仿真方法[J].中国电机工程学报,2009(09):118-123.
[21] 李坚石;倪文平;焦莉.低压电器电接触热过程的数学-物理理论[J].贵州大学学报(自然科学版),1990(4):247-252.
[22] 谭志龙,陈松,管伟明,郭俊梅.AgNi10触头材料闭合接触阶段的热-电-力耦合分析及实验研究[J].稀有金属材料与工程,2012(02):276-280.
[23] 谭志龙,管伟明,郭俊梅,陈松.AgNi10触头材料分离阶段的热-电-力耦合分析及实验研究[J].稀有金属材料与工程,2012(10):1780-1784.
[24] Ishida H;Watanabe Y;Taniguchi M.Observation of contact bridge phenomena at transient and steady state[A].IEEE,2004:519-522.
[25] Ishida H;Watanabe Y;Taniguchi M.Observation of contact bridge phenomena at transient and steady state[A].IEEE,2004:519-522.
[26] Koren P P;Nahemow M D;Slade P G .The molten metal bridge stage of opening electrical contacts[J].Parts Hybrids and Packaging IEEE Transactions on,1975,11(1):4-10.
[27] Kazuaki MIYANAGA;Yoshiki KAYANO;Tasuku TAKAGI;Hiroshi INOUE .Effect of Heating Value on Contact Diameter at Low Speed Breaking Contact[J].IEICE transactions on electronics,2009(8):981.
[28] Miyanaga K;Kayano Y;Komakine T et al.Effect of heat conductivity on bridge break at different material contact pairs[J].IEICE Transactions on Electronics,2011,94(9):1431-1434.
[29] Kharin S N.Mathematical model of the short arc phenomena at the initial stage[A].,1997:289-305.
[30] Kharin S N .Post bridge phenomena in electrical contacts at the initial stage[J].Components Packaging and Manufacturing Technology Part A IEEE Transactions on,1996,19(3):313-319.
[31] Kharin S N.Thermocapillary mechanism of contact erosion during arcing[A].IEEE,1990:37-43.
[32] Sotiris P E;Margaritis K;Thodoris D K .Electrical conductance study of θ-liquid bridges[J].Journal of Colloid and Interface Science,2006,302:597-604.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%