Influence of Humidity on Endurance of Electrical Contact during Fretting Wear

被引:0
作者
Xin-long Liu
Zhi-hao Li
Ji-Fan He
Qian Xiao
Wen-bin Yang
Dao-yun Chen
机构
[1] East China Jiaotong University,Tribology Research Institute
[2] Traction Powder State Key Laboratory Southwest Jiaotong University,undefined
来源
Journal of Materials Engineering and Performance | 2022年 / 31卷
关键词
contact resistance; fretting; humidity; physical model; self-resistance; wear debris;
D O I
暂无
中图分类号
学科分类号
摘要
Stable and low contact resistance is the basic requirement of each connector in electrical contact. There are many factors that affect contact resistance and investigated by many previous studies. In this work, the effect of wear debris to electrical contact endurance at different relative humidity is studied by fretting test. The contact resistance evolution curve at different relative humidity indicates that the wear debris is more effective to electrical contact resistance. The composition of the wear debris is analyzed by x-ray photoelectric spectroscopy. It is clearly revealed that wear debris give a sharp rise to contact resistance. In addition, measured results illuminated that the contact resistance is greatly reduced with the wear debris washed. Higher relative humidity can restrain the generation of debris to a certain extent. Physical model of debris formation is established to evaluate ultimate lifetime of contactor.
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页码:933 / 943
页数:10
相关论文
共 89 条
  • [1] Antler M(1985)Survey of Contact Fretting in Electrical Connectors IEEE Trans. Com. Hybrids Manuf.Technol. 8 87-104
  • [2] Hannel S(2001)The Fretting Sliding Transition as a Criterion for electrical Contact Performance Wear 249 761-770
  • [3] Fouvry S(2017)Grease Lubricated Fretting of Silver Coated Copper Electrical Contacts Wear 376 634-642
  • [4] Kapsa P(2017)Combined Effects of Fretting and Pollutant Particles on the Contact Resistance of the Electrical Connectors Prog. Nat. Sci. Mater. Int. 27 385-390
  • [5] Larsson E(2012)Electrical Contact Resistance Effect on Resistance Spot Welding Int. J. Heat Mass Transf. 55 3316-3324
  • [6] Andersson AM(2017)In Situ Formation and Doping of Ag/SnO 2 Electrical Contact Materials J. Alloy. Compd. 716 106-111
  • [7] Rudolphi ÅK(2007)Fretting-corrosion mapping of tin-plated copper alloy contacts Wear 262 228-233
  • [8] Kong Z(2014)Fretting Corrosion: Analysis of the Failure Mechanism for Low Voltage Drives Applications Microelectron. Reliab. 54 2109-2114
  • [9] Swingler J(2018)Effect of Humidity on Friction and Wear—A Critical Review Lubricants 6 74-261
  • [10] Wei PS(2016)Effect of Displacement and Humidity on Contact Resistance of Copper Electrical Contacts Tribol. Int. 95 256-256