Surface & Coatings Technology2022,Vol.43110.DOI:10.1016/j.surfcoat.2021.128043

Microstructure and mechanical properties of TiC/FeCrSiB coating by laser additive remanufacturing on shearer spiral blade

Yue, Haitao Lv, Ning Guo, Chenguang Zhao, Lijuan Li, Qiang Zhang, Jianzhuo Zhang, Yin
Surface & Coatings Technology2022,Vol.43110.DOI:10.1016/j.surfcoat.2021.128043

Microstructure and mechanical properties of TiC/FeCrSiB coating by laser additive remanufacturing on shearer spiral blade

Yue, Haitao 1Lv, Ning 1Guo, Chenguang 1Zhao, Lijuan 1Li, Qiang 1Zhang, Jianzhuo 1Zhang, Yin1
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作者信息

  • 1. Liaoning Tech Univ
  • 折叠

Abstract

Spiral blades are the main working mechanism of shearers, and the service life of blades directly affects the coal-rock cutting progress and enterprise production efficiency. To repair the damaged spiral blade and improve the wear resistance, FeCrSiB coatings having different amounts of reinforcing TiC particles were fabricated on the blade material 34CrNiMo6 by laser additive manufacturing technology. The effects of the TiC particle weight fraction on the microstructure, phase, hardness and wear resistance of the TiC/FeCrSiB composite coating were systematically studied. A laser additive remanufacturing repair experiment of damaged spiral blades based on reverse engineering technology was performed. The results indicated that the composite coating had good metallurgical bonding with the 34CrNiMo6 substrate, and the TiC particles converged towards the top of the coating via Marangoni convection and dynamic viscosity. The composite coatings mainly consisted of gamma-(Fe, Cr) solid solution, M23C6, Fe2B/Cr2B and TiC. By increasing the TiC concentration in the composites, the hardness and wear resistance of the coating were significantly improved. The Rockwell hardness, microhardness and wear rate of the 30%-TiC-reinforced coating were 74.82 HRC, 1143.61 HV0.5 and 0.45 x 10(-2) mm(3)N(-1) mm(-1), respectively, and the wear resistance of the composite coating was 9 times higher than that of the substrate. The experimental results show that the laser additive remanufacturing TiC reinforced coating was an effective method to repair damaged spiral blades and improve the service performance.

Key words

Laser additive remanufacturing/Shearer spiral blade/TiC/Composite coating/Microstructure/Mechanical properties/WEAR/PERFORMANCE/MATRIX/OPTIMIZATION/FABRICATION/COMPONENTS/SURFACE/POWDER/REPAIR/ALLOY

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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33
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