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Microstructure and Properties of In Situ Synthesized MoB/NiCr Coatings with Different (Mo+B)/(Ni+Cr) Mass Ratios
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Affiliation:

1.Xinyu Key Laboratory of Materials Technology and Application for Intelligent Manufacturing, Xinyu University, Xinyu 338004, China;2.National Center for International Research of Subsea Engineering Technology and Equipment, Dalian Maritime University, Dalian 116026, China;3.Jiangxi Province Engineering Research Center of Materials Surface Enhancing & Remanufacturing, Jiujiang University, Jiujiang 332005, China

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Fund Project:

National Natural Science Foundation of China (51861012); Science and Technology Project of Jiangxi Educational Bureau (GJJ191068, GJJ191049); Science Technology Project of Jiujiang City ([2015]-64)

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    Abstract:

    Three kinds of Mo-B-Ni-Cr ball-milled mixture powders with different (Mo+B)/(Ni+Cr) mass ratios (1:1, 2:1, and 3:1) were deposited by the high velocity oxygen-fuel (HVOF) spraying process to in situ synthesize MoB/NiCr coatings. The microstructure and phase composition of MoB/NiCr coatings were analyzed by scanning electron microscope (SEM) and X-ray diffraction (XRD). The effects of different (Mo+B)/(Ni+Cr) mass ratios on the microstructure, microhardness, bonding strength, and corrosion resistance of MoB/NiCr coatings were discussed. The results show that MoB/NiCr coatings with (Mo+B)/(Ni+Cr) mass ratio of 1:1 have the lowest porosity and the largest thickness. Mo2NiB2 ternary boride was in situ synthesized in all three kinds of MoB/NiCr coatings. The content of Mo2NiB2 ternary boride is increased with increasing the (Mo+B)/(Ni+Cr) mass ratio. The microhardness of MoB/NiCr coatings is increased with increasing the (Mo+B)/(Ni+Cr) mass ratio, while the bonding strength is decreased. After immersion test in molten zinc for 360 h, no zinc or its intermetallic compound can be observed in the surface region of MoB/NiCr coatings according to energy disperse spectrometer (EDS) and XRD analyses. The porosity of the coatings is increased with increasing the (Mo+B)/(Ni+Cr) mass ratio, while the thickness is decreased. Compared with other coatings, the MoB/NiCr coating with (Mo+B)/(Ni+Cr) mass ratio of 1:1 has better corrosion resistance in molten zinc.

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[Chen Xiao, Li Chengdi, Zhou Hongkai, Pi Zhimin, Bai Xiaobo. Microstructure and Properties of In Situ Synthesized MoB/NiCr Coatings with Different (Mo+B)/(Ni+Cr) Mass Ratios[J]. Rare Metal Materials and Engineering,2021,50(9):3085~3093.]
DOI:10.12442/j. issn.1002-185X.20200578

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History
  • Received:August 06,2020
  • Revised:September 12,2020
  • Adopted:September 21,2020
  • Online: September 26,2021
  • Published: September 24,2021