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Effect of BN on sintering property and titanium melt erosionresistance of AlN refractories
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Affiliation:

1.School of Mechanical and Automotive Engineering,South China University of Technology;2.School of Materials Science and Engineering,Huazhong University of Science and Technology

Clc Number:

TG146.2+3;TU541

Fund Project:

National Key Research and Development Plan(2020YFB2008300,2020YFB2008301,2020YFB2008305);Natural Science Foundation of Guangdong Province(2020A1515011242);Construction Fund of Guangdong-Hong Kong-Macao Greater Bay Area International Science and Technology Innovation Center in the field of international Science and Technology cooperation of Guangdong Province(2021A0505050002);High-end Foreign Expert Introduction Program (G2021163004L)

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    Abstract:

    Oxygen-free and easy to process AlN/BN refractory composite ceramics were prepared by pressure-free sintering at 1850 ℃ for 4 h with a new type of refractory material AlN as the matrix, adding different contents of high-activity h-BN and sintering assistant Y2O3. The microstructure of the composite ceramics was analyzed, and the wetting behavior and interfacial reaction between the composite ceramic and TiAl melt were studied. The results show that the addition of BN particles can effectively fill the gap of AlN particles and promote the sintering densification of composite ceramics. When adding 5 wt% BN particles, the density of the composite ceramics reaches the highest: 89.24%. The microstructure of the composite ceramics is composed of AlN, BN and yttrium aluminate Y4Al2O9, which is mainly distributed at the interface of AlN particles. The interfacial wettability between the composite ceramics and the TiAl melt is reduced by addition of BN particles. The interfacial wettability angle of the composite ceramic containing 5 wt% BN and the TiAl melt is about 136°, indicating that the composite ceramics and TiAl melt are poorly wetted and the composite ceramics exhibit good chemical inertia. The interfacial reaction experiments show that the composite ceramics have good corrosion resistance to TiAl melt. The interface between the composite ceramics and TiAl melt is smooth and clear, the thickness of the interfacial layer is only 9.5 μm, and no obvious element diffusion occurs. It indicates that AlN/BN composite ceramics are a potential refractory for titanium alloy melting.

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[Zhang Shengting, Zhang Weiwen, Li Ning, Zhao Chao, Wang Zhi. Effect of BN on sintering property and titanium melt erosionresistance of AlN refractories[J]. Rare Metal Materials and Engineering,2023,52(8):2919~2925.]
DOI:10.12442/j. issn.1002-185X.20220669

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History
  • Received:August 26,2022
  • Revised:October 26,2022
  • Adopted:November 10,2022
  • Online: August 28,2023
  • Published: August 24,2023