4.5 Article

Tribological properties and lubrication mechanism of in situ graphene-nickel matrix composite impregnated with lubricating oil

Journal

MATERIALS RESEARCH EXPRESS
Volume 5, Issue 5, Pages -

Publisher

IOP PUBLISHING LTD
DOI: 10.1088/2053-1591/aac10c

Keywords

nickel matrix composites; graphene; in situ fabrication; solid-liquid synergetic lubricating; tribochemistry

Funding

  1. National Natural Science Foundation of China [51741104]
  2. Open Fund Project of National United Engineering Laboratory for Advanced Bearing Tribology [201706]

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A solid-liquid synergetic lubricating system has been designed to develop a novel self-lubricating nickel matrix composite. The graphene-nickel (G-Ni) matrix composite with porous structure was fabricated by in situ growing graphene in bulk nickel using a powder metallurgy method. The porous structures of the composite were used to store polyalphaolefin (PAO) oil for self-lubricating. It is found that the G-Ni matrix composite under oil lubrication condition exhibited superior tribological properties as compared to pure nickel and the composite under dry sliding condition. The prestored oil was released from pores to the sliding surface forming a lubricating oil film during friction process. This lubricating oil film can protect the worn surface from severe oxidation, and help the formation and transfer of a carbon-based solid tribofilm derived from graphene and lubricating oil. This solid (graphene)-liquid (oil) synergistic lubricating mechanism is responsible for the reduction of friction coefficient and improvement of wear resistance of the in situ fabricated G-Ni matrix composite.

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