Tribological Properties of Cu-Based Self-Lubricating Materials Composed with Cu- or Ni-Plated Graphite

Author:

Wang Yiran12ORCID,Xu Liujie1,Li Xiuqing1ORCID

Affiliation:

1. National Joint Engineering Research Center for Abrasion Control and Molding of Metal Materials, Henan University of Science and Technology, Luoyang 471003, China

2. State Key Laboratory for Mechanical Behaviour of Materials, School of Materials Science and Engineering, Xi’an Jiaotong University, Xi’an 710049, China

Abstract

Cu-based self-lubricating materials can effectively adapt to complex natural environments and ensure consistency in materials used for switch transitions. These materials were tested through interface reinforcement research, improving their mechanical and tribological properties and providing a theoretical basis for new switch slide baseplate materials. Results showed that the coefficient of friction and wear weight loss of Cu-based self-lubricating materials decreased with an increase in graphite content after Cu and Ni plating on the graphite surface, reaching a minimum value at a graphite content of 6 wt.%. The coefficient of friction and wear weight loss of the Ni-plated material were reduced 11.1% and 85.6%, respectively, whereas the coefficient of friction and wear weight loss of Cu-plated materials were reduced 7.2% and 78.4%, respectively. Compared to Cu plating, Ni plating substantially enhanced the friction and wear performance of Cu-based self-lubricating materials. Cu and Ni plating increased the adhesion of the materials on the pin surface and the adhesive materials’ composition was consistent with the lubricating film, which changed the grinding mechanism between the pin and the disk. Ni plating had a stronger effect on the tribological performance of Cu-based self-lubricating materials than Cu plating.

Funder

Open Fund of the National Joint Engineering Research Centre for Abrasion Control and Moulding of Metal Materials

Publisher

MDPI AG

Subject

Surfaces, Coatings and Films,Mechanical Engineering

Reference28 articles.

1. Research on the switch slide baseplates under the conditions of dry friction;Luo;J. Shanghai Tiedao Univ.,1998

2. Plastic dry bearings in switch slide baseplates;Bishop;J. Rep. Proc. Perm. Way Inst.,1990

3. Wear reduction mechanism of graphite and MoS2 in epoxy composites;Li;Wear,2004

4. Effect of composition on friction coefficient of Cu–graphite composites;Emmer;Wear,2008

5. A novel electrical contact material with improved self-lubrication for railway current collectors;Manory;Wear,2001

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