Effect of milling time on microstructure and mechanical properties of Cu-Ni-graphite composites

  • Yiran Wang
  • , Yimin Gao
  • , Yefei Li
  • , Chao Zhang
  • , Xiaoyu Huang
  • , Wenyan Zhai

Research output: Contribution to journalArticlepeer-review

18 Scopus citations

Abstract

Cu-Ni-graphite composites are intended for application in switch slide baseplate materials. The microstructure of the composites depends strongly on the ball milling time, and a suitable time can significantly improve the properties of the Cu-Ni-graphite composites. In this study, a two-step milling method was employed. The morphology evolution and microstructural features of the powder was characterized at different milling times. Afterwards, the Cu-Ni-graphite composites were prepared in the process of cold pressing, sintering, re-pressing and re-sintering as a function of the different milling times. Finally, both the microstructure and mechanical properties of the Cu-Ni-graphite composites are discussed. The results show that no new phase was generated during the milling process. The morphology evolution of the mixture of Cu/Ni powder changed from spherical-like to cubic-like, plate-like and flake-like with an increasing milling time. The microstructure of the composites consisted of α-phase and graphite. The boundary area and quantity of pores changed as the milling time increased. The relative density, hardness and flexural strength reached maximum values at 15 h of milling time.

Original languageEnglish
Article number096506
JournalMaterials Research Express
Volume4
Issue number9
DOIs
StatePublished - Sep 2017

Keywords

  • Cu-Ni-graphite composites
  • Microstructure characterization
  • Milling time

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