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Preparation and Characterization of Core-Shell MoSi2@Nb Materials Sintered by SPS
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1.School of Materials Science and Engineering, Nanchang Hangkong University, Nanchang330063, China;2.Jiangxi Provincial Engineering Research Center for Surface Technology of Aeronautical Materials, Nanchang Hangkong University, Nanchang330063, China

Clc Number:

TB331

Fund Project:

National Natural Science Foundation of China (51861026); The Graduate Innovation Special Fund of Nanchang Hangkong University (YC2022-011)

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    Abstract:

    Core-shell MoSi2@Nb powder was prepared by electrostatic layer self-assembly method. The surfactants SDS (CHSO4Na) and CTAB (C19H42BrN) were used to modify the surface of the two particles to make them charged, and the Zeta potential of the suspension was tested by the Zeta potentiometer. Scanning electron microscope, transmission electron microscope and energy dispersive spectrometer were used to characterize the phase, morphology, microstructure and element distribution of synthetic materials. The results show that when the SDS concentration is 2 mmol/L, the CTAB concentration is 3mmol/L and the pH value of Nb suspension is 5, the coating effect is better after secondary cladding. NbSi2 phase is found at the interface between Nb and MoSi2 after calcination at 200 °C for 2 h in Ar atmosphere, indicating that Nb is highly active and reacts with Si. Core-shell structure is still retained in MoSi2@Nb material after spark plasma sintering at 1450 °C for 2 h under uniaxial pressure of 40 MPa. However, it is found that Nb reacts strongly with MoSi2, and most of the Nb phase is reacted. This issue needs to be addressed in subsequent studies. The fracture toughness (KIC) of MoSi2@Nb material is significantly improved to 5.75 MPa·m0.5 compared with that of MoSi2 material (3.32 MPa·m0.5).

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[Luo Jiajun, Quan Ciwang, Zhang Jianjun, Chen Shuixiang, Zhang Xitong, Han Mengyao, Liang Bingliang, Chen Weihua. Preparation and Characterization of Core-Shell MoSi2@Nb Materials Sintered by SPS[J]. Rare Metal Materials and Engineering,2024,53(11):3053~3063.]
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History
  • Received:February 29,2024
  • Revised:September 18,2024
  • Adopted:April 17,2024
  • Online: November 18,2024
  • Published: November 08,2024