期刊文献+

两种受电靴材料与不锈钢带电接触摩擦磨损特性的试验研究 被引量:5

Experimental Study on Friction and Wear of Copper-based Sintered Alloy and Copper-graphite Sintered Alloy against Stainless Steel
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摘要 在销-盘式摩擦磨损试验机上分别进行了不锈钢/铜基烧结合金材料和不锈钢/铜石墨烧结材料接触的载流摩擦磨损行为的试验研究。在试验中记录了摩擦因数和磨损量的变化,并对磨痕形貌进行了光学显微镜观察。结果显示,电流对2种摩擦副带电接触的摩擦磨损行为有重要的影响。2种材料的摩擦因数随电流的增大而呈现截然相反的变化趋势,但两者的磨损量却随电流的增加而增大。不锈钢/铜基烧结合金材料的磨损机制主要是粘着磨损及氧化磨损。不锈钢/铜石墨烧结材料磨损机制包括磨粒、粘着磨损和电弧烧蚀,其中电弧烧蚀对磨损量的影响随电流的增大而增加。 A series of experimental tests were carried out using stainless steel rubbing against copper based sintered alloy and copper-graphite sintered alloy with electrical current on a pin-on-disc test rig. During the test, the friction coefficient and wear loss were collected. The worn surfaces were observed with an optical microscope. The result shows that electrical current intensity has a distinct effect on the friction and wear behavior of two different material couples. With increasing electrical current intensity,the friction coefficient increases for the copper based sintered alloy couple but decreases for the copper-graphite sintered alloy couple. The wear losses of both couples increase with increasing electrical current intensity. The wear mechanism of stainless steel against copper based sintered alloy is mainly attributed to adhesion, abrasion and oxidation. The wear mechanism of stainless steel against copper-graphite sintered alloy mainly includes abrasion, adhesion and electrical arc ablation which aggravates with increasing electrical current intensity.
出处 《润滑与密封》 CAS CSCD 北大核心 2007年第2期13-15,18,共4页 Lubrication Engineering
基金 创新研究群体科学基金项目(50521503) 博士点科学基金项目(20050613015)
关键词 摩擦 磨损 铜石墨 电流 friction wear copper copper-graphite sintered alloy electrical current
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参考文献10

  • 1Azevedo C R F,Sinatora A.Failure analysis of a railway copper contact strip[J].Engineering Failure Analysis,2004,11:829-841.
  • 2Bouchoucha A,Chekroud S,Paulmier D.Influence of the electrical sliding speed on friction and wear processes in an electrical contact copper-stainless steel[J].Applied Surface Science,2004,223:330-342.
  • 3Shunichi Kubo,Koji Kato.Effect of arc discharge on the wear rate and wear mode transition of a copper-impregnated metallized carbon contact strip sliding against a copper disk[J].Tribology International,1999,32:367-378.
  • 4Bouchoucha A,Zaidi H,Kadiri E K,et al.Influence of electric fields on the tribological behaviour of electrodynamical copper/steel contacts[J].Wear,1997,200/204:434-441.
  • 5李鹏,杜三明,孙乐民,张永振.载电条件下铬青铜/纯铜摩擦副摩擦磨损性能研究[J].摩擦学学报,2003,23(3):250-252. 被引量:26
  • 6孟永钢,蒋洪军,纪宏.电摩擦现象——电场对金属/陶瓷摩擦行为的影响[J].摩擦学学报,1999,19(1):45-49. 被引量:16
  • 7He D H,Rafael R Manory,Norm Grady.Wear of railway contact wires against current collector materials[J].Wear,1998,215:146-155.
  • 8Mansori M E,Paulmier D,Ginsztler J,et al.Lubrication mechanisms of a sliding contact by simultaneous action of electric current and magnetic field[J].Wear,1999,225/229:1011-1016.
  • 9He D H,Manory R,Sinkis H.A sliding wear tester for overhead wires and current collectors in light rail systems[J].Wear,2000,239:10-20.
  • 10Hiroki Nagasawa,Koji Kato.Wear mechanism of copper alloy wire sliding against iron-base strip under electric current[J].Wear,1998,216:179-183.

二级参考文献12

  • 1陈仁际,翟文杰,齐毓霖.用外加电压控制摩擦力的机理与技术Ⅱ.外加电压对摩擦力影响的研究[J].摩擦学学报,1996,16(3):235-238. 被引量:18
  • 2[1]He D H,Manory R,Sinkis H.A sliding wear tester for overhead wires and current collectors in light rail systems[J].Wear,2000,239: 10-20.
  • 3[2]Zhao H,Barber G C,Liu J.Friction and wear in high speed sliding with and without electrical current[J].Wear,2001,249: 409-414.
  • 4[3]Da Hai He,Rafael R Manory,Norm Grady.Wear of railway contact wires against current collector materials[J].Wear,1998,215: 146-155.
  • 5[4]Shunichi Kubo,Koji Kato.Effect of arc discharge on wear rate of Cu-impregnated carbon strip in unlubricated sliding against Cu trolley under electric current[J].Wear,1998,216: 172-178.
  • 6[5]Hiroki Nagasawa,Koiji Kato.Wear mechanism of copper alloy wire sliding against iron-base strip under electric current[J].Wear,1998,216: 179-183.
  • 7[8]Bouchoucha A,Zaidi H,Kadiri E K,et al.Influence of electric fields on the tribological behaviour of electro dynamical copper/steel contacts[J].Wear,1997,203-204: 434-441.
  • 8蒋洪军,中国科学.E,1998年,28卷,6期,491页
  • 9Tung S C,Tribol Trans,1991年,34卷,4期,479页
  • 10蒋洪军,孟永钢,温诗铸.电场对Al_2O_3/Cu摩擦磨损特性的影响及其机理研究[J].中国科学(E辑),1998,28(6):491-498. 被引量:2

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