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双电层对水润滑特性影响的实验研究(英文)

Experimental study of influence on electric double layer on aqueous lubrication
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摘要 Near interfaces of solid and liquid,electric double layer has electro-viscosity effects.Theoretical study shows that this electro-viscosity will make friction coefficient increase in thin film lubrication.The purpose of this study is to verify the influence of electric double layer on aqueous lubrication in an experimental way.Experiments were done on a composite sliding block tester,with distilled water as basic lubricant.Two different methods were adopted in the experiments.One is to add external electric field on friction pair and the other is to change ionic concentration in lubricant with additive-KCL here.Both methods can make electro-viscosity change according to theoretical research.During experiments,friction coefficient and steaming potential were measured.Experimental results show that electro-viscosity has significant influence on friction coefficient when film is thin.Friction coefficient increases obviously under thin film situation when external electric field is added or ionic concentration of lubricant is changed.In addition,with the increase of concentration of KCL,friction coefficient increases quickly.Test results indicate that electro-viscosity has significant effects on aqueous lubricating performance. Near interfaces of solid and liquid, electric double layer has electro-viscosity effects. Theoretical study shows that this electro-viscosity will make friction coefficient increase in thin film lubrication. The purpose of this study is to verify the influence of electric double layer on aqueous lubrication in an experimental way. Experiments were done on a composite sliding block tester, with distilled water as basic lubricant. Two different methods were adopted in the experiments. One is to add external electric field on friction pair and the other is to change ionic concentration in lubricant with additive -KCL here. Both methods can make electro-viscosity change according to theoretical research. During experiments, friction coefficient and steaming potential were measured. Experimental results show that electro-viscosity has significant influence on friction coefficient when film is thin. Friction coefficient increases obviously under thin film situation when external electric field is added or ionic concentration of lubricant is changed. In addition, with the increase of concentration of KCL, friction coefficient increases quickly. Test results indicate that electro-viscosity has significant effects on aqueous lubricating performance.
出处 《工程设计学报》 CSCD 北大核心 2007年第3期253-261,共9页 Chinese Journal of Engineering Design
基金 National Science Foundation of China(50375052) National Science Foundation for Post-doctoral Scien-tists of China(2005037336).
关键词 润滑特性 双电层 液体流动 实验 固液界面 流动电流 自然现象 传导电流 electric double layer electro-viscosity friction coefficient streaming potential
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  • 1HUANG Ping,Li Zhiheng,MENG Yonggang,WEN Shizhu 1. Mechatronic Engineering Department, South China University of Technology, Guangzhou 510641, China 2. National Tribology Laboratory, Tsinghua University, Beijing 100084, China.Study on hydrodynmic lubrication with second-order thed (Ⅰ)——Basic equations[J].Science China Mathematics,2001,44(S1):1-7. 被引量:4
  • 2Li Zhiheng,HUANG Ping,MENG Yonggang,WEN Shizhu 1. Mechatronic Engineering Department, South China University of Technology, Guangzhou 510641, China,2. National Tribology Laboraory, Tsinghua University, Beijing 100084, China.Study on hydrodynamic lubrication with second-order fluid (Ⅱ)——Numerical Analysis[J].Science China Mathematics,2001,44(S1):8-13. 被引量:4
  • 3[1]Su Y Y. Ehanced boundary lubrication by potential control during copper wire drawing[J]. Wear, 1997, 210: 165-170.
  • 4[2]Henryk W. The effect of an external field on the operation of an aluminium oxide-cast iron sliding contact joint[J]. Wear, 1997, 208: 113-117.
  • 5[3]Lavielle L. Electric field effect on the friction of a polyethylene-terpolymer film on a steel substrate[J]. Wear, 176: 89-93.
  • 6[4]Kunio G. The influence of surface induced voltage on the wear mode of stainless steel[J]. Wear, 1995, 185: 75-81.
  • 7[5]Tung S C, Wang S S. In-situ electro-charging for friction reduction and wear resistant film formation[J]. Tribology Transactions, 1991, 34(4): 479-488.
  • 8[6]Tung S C, Wang S S. Friction reduction from eletrochemically deposited films[J]. Tribology Transactions, 1991, 34(1): 23-34.
  • 9[7]Zhu Y Y, Kelsall G H, Spikes H A. The influence of electrochemical Potentials on the friction and wear of iron and iron oxides in aqueous systems[J]. Tribology Transactions, 1994, 37(4): 811-819.
  • 10[8]Barril S, Mischler S, Landolt D. Triboelectrochemical investigation of the friction and wear behaviour of TiN coatings in a neutral solution[J]. Tribology International, 2001, 34: 599-608.

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