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Effect of Y2O3 doping on microstructure and phase structure of plasma-sprayed ZrSiO4 coatings
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1.Research Center of Modern Surface and Interface Engineering,Anhui University of Technology,Ma’anshan;2.Key Laboratory of Green Fabrication and Surface Technology of Advanced Metal Materials,Ministry of Education,Anhui University of Technology,Ma’anshan

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TG178

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    Abstract:

    In this paper, ZrSiO4 and Y2O3 doped ZrSiO4 coatings were successfully prepared by atmospheric plasma spraying. The microstructure, mechanical properties and sintering behavior at 1300 °C of coatings were investigated. The results showed that plasma-sprayed ZrSiO4 coating was mainly composed of ZrSiO4, t-ZrO2, a small amount of m-ZrO2 and amorphous SiO2 phases, while the ZrSiO4-5%Y2O3 coating contained c-ZrO2, a small amount of ZrSiO4 phase and amorphous SiO2. Compared with ZrSiO4 coating, Y2O3 doping slightly improved the hardness and fracture toughness of ZrSiO4-5%Y2O3 coating. After sintered at 1300 °C for 48 h, (t,m)-ZrO2 reacted with amorphous SiO2 to form new ZrSiO4 phase in plasma-sprayed ZrSiO4 coating accompanied by volume shrinkage, resulting in a large number of pores and cracks in the coating. In contrast, c-ZrO2 phase and ZrSiO4 phase were the main phases in the ZrSiO4-5%Y2O3 coating. The addition of Y2O3 helped the ZrO2 in the coating to maintain the cubic phase (c-ZrO2), which improved the high-temperature phase stability of ZrO2.

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[Wang Xin, Xue Zhaolu, Liu Xia, Deng Hailiang, Zhang Shihong. Effect of Y2O3 doping on microstructure and phase structure of plasma-sprayed ZrSiO4 coatings[J]. Rare Metal Materials and Engineering,2022,51(9):3427~3434.]
DOI:10.12442/j. issn.1002-185X.20210694

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History
  • Received:August 04,2021
  • Revised:September 01,2021
  • Adopted:September 29,2021
  • Online: October 08,2022
  • Published: September 27,2022