Surface & Coatings Technology2022,Vol.44013.DOI:10.1016/j.surfcoat.2022.128480

Effect of Ti addition on microstructure and tribological properties of laser cladding Ni35/WC coating in an oxygen-free environment

Jing, Peiyao Wang, Haijun Chen, Wengang Chen, Long Yin, Hongze Wu, Huajie Li, Dongyang
Surface & Coatings Technology2022,Vol.44013.DOI:10.1016/j.surfcoat.2022.128480

Effect of Ti addition on microstructure and tribological properties of laser cladding Ni35/WC coating in an oxygen-free environment

Jing, Peiyao 1Wang, Haijun 1Chen, Wengang 1Chen, Long 1Yin, Hongze 1Wu, Huajie 1Li, Dongyang2
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作者信息

  • 1. Southwest Forestry Univ
  • 2. Univ Alberta
  • 折叠

Abstract

In this study, Ni35/WC coatings with different Ti contents were prepared by laser melting coating in two environments (oxygen-free and ordinary atmospheric environments). Effects of Ti addition on microstructure characteristics and dilution rate of the composite coating in an oxygen-free environment were investigated. Corresponding tribological properties and microhardness of the coating were evaluated. It is shown that the laser cladding in the oxygen-free environment reduced the splash phenomenon during the preparation of the Ticontaining coating, thereby reducing the number of defects in the coating. After adding Ti, the dilution rate of the coating increased significantly. The oxygen-free environment during coating preparation could effectively decrease the dilution rate, which made the microhardness distribution of the coating smoother with significantly improved friction stability. By analyzing the worn surface of the coating, it was found that the addition of Ti could effectively decrease adhesive wear and oxidation wear of the Ni35/WC coating. An oxygen-free environment can keep more actual Ti content in the coating, leading to lowered wear rate.

Key words

Laser cladding/Oxygen-free environment/Ti addition/Uniformity/Wear mechanism/INCONEL 625 WIRE/COMPOSITE COATINGS/WEAR-RESISTANCE/CRACKING SUSCEPTIBILITY/MECHANICAL-PROPERTIES/PLUS WC/BEHAVIORS/EVOLUTION/DILUTION

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出版年

2022
Surface & Coatings Technology

Surface & Coatings Technology

ISTP
ISSN:0257-8972
被引量6
参考文献量46
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