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Microstructure and properties of graphene reinforced co-based composite coating by laser cladding

delete2023-01-01
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PRE
AI
W
Wei Chang
G
Guangchun Xiao *
H
Hui Zhang
陈辉 cover
陈辉 (Hui Chen)
M
Mingdong Yi
J
Jingjie Zhang
Z
Zhaoqiang Chen
C
Chonghai Xu
DOI:10.1016/j.surfcoat.2022.129139delete
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Abstract

Abstract

En 中文
Graphene (Gr)-reinforced Co-based (Co50) composite coatings were prepared on 40Cr steel substrates by laser cladding technology. The effects of different amounts of Gr addition on the microstructure and mechanical properties of the coating were studied. The addition of a proper amount of Gr can improve the comprehensive properties of the coating, and most of the Gr forms carbides, such as Cr23C6 and Cr7C3, under the action of laser irradiation. The addition of Gr can significantly refine the grains and evenly distribute them. When the addition of Gr is 3 wt%, the average grain size in the coating is the smallest, which is 5.7 mu m, and the highest microhardness reaches 777.5 HV0.2, which is an increase of 270.2 % compared with that of the substrate. The unmelted Gr remains dispersed in the coating, which can improve lubrication and reduce friction. The average friction coefficient and wear volume are decreased to 0.335 and 4.26 x 107 mu m3, which are approximately 54.2 % and 28.0 % of those of the substrate, respectively.
Keywords:
Laser cladding
Graphene
Co-based coating
Microstructure
Tribological performance

Journal

Surface and Coatings Technology cover
Surface and Coatings Technology
IF:
6.1
Papers:
2.8W
Citations:
7.1W

Organization

Q
Qilu University of Technology
Scholars:
1.1W
Papers: 8.9K
Citations: 16
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