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Synthesis of an intermetallic powder with a hard magnetic phase τ-MnAl by calcium thermal reduction

  • Adit Sharma
  • , M. V. Gorshenkov
  • , S. N. Yudin
  • , T. A. Morozova
  • , E. R. Khusainova
  • , N. M. Vazhinskii
  • , K. S. Nechaev
  • , J. C. Qiao
  • Northwestern Polytechnical University Xian
  • National University of Science and Technology "MISiS"

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1 引用 (Scopus)

摘要

This study investigates the synthesis parameters of MnAl(C) powders using the calcium-thermal reduction of aluminum oxide (Al2O3) and manganese oxide (MnO), aiming to produce Mn-Al alloys within the compositional range of the metastable hard magnetic phase (τ-MnAl). Pure graphite was used as the carbon source for the alloying. This study explored the impact of Al2O3/MnO ratio, CaH2 content, and compaction method. Hydrothermal purification with acetic acid yielded irregularly shaped Mn-Al powders (20–50 μm). Analysis of the Mn/Al compositions indicated that a 50–100 % excess of the initial aluminum was needed to obtain an alloy composition laying within τ-MnAl phase. The powder obtained in air-cooled container had small τ-phase content. Approximately 50 % τ-MnAl was achieved by conducting the reaction in pre-evacuated steel containers at 1250 °C for 2 h, followed by water quenching from 950 °C. This resulted in a low-cost powder with a magnetization of 50 A m2/kg and a coercive force of 38 A/m. While the formation of the τ-phase is promising, its limited fraction (≈50 %) significantly reduces the magnetic performance. This currently makes the material unsuitable for additive manufacturing or mechanical grinding followed by compaction. Further optimization is required to increase the τ-phase fraction before considering practical applications.

源语言英语
文章编号108961
期刊Intermetallics
186
DOI
出版状态已出版 - 11月 2025

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