Preparation of Mo–Si–B Alloy via Centrifugal SHS of MoO3/Al/Si/B/Al2O3 mixture: Effect of Al
Author:
Publisher
Allerton Press
Subject
Process Chemistry and Technology,General Materials Science
Link
https://link.springer.com/content/pdf/10.3103/S1061386223040179.pdf
Reference6 articles.
1. Berczik, D.M., US Patent 5595616, 1997.
2. Pogozhev, Yu.S., Potanin, A.Yu., Levashov, E.A., Novikov, A.V., Sviridova, T.A., and Kochetov, N.A., Synthesis of high-temperature Mo5SiB2 based ceramics in the combustion mode, Известия вузов. Порошковая металлургия и функциональные покрытия, 2013, no. 3, pp. 54–60. https://doi.org/10.17073/1997-308X-2013-3-54-60
3. Levashov, E.A., Pogozhev, Yu.S., Potanin, A.Yu., Kochetov, N.A., Kovalev, D.Yu., Shvyndina, N.V., and Sviridova, T.A., Self-propagating high-temperature synthesis of advanced ceramics in the Mo–Si–B system: Kinetics and mechanism of combustion and structure formation, Ceram. Int., 2014, vol. 40, no. 5, pp. 6541–6552. https://doi.org/10.1016/j.ceramint.2013.11.107
4. Esparza, A. and Shafirovich, E., Mechanically activated combustion synthesis of molybdenum borosilicides for ultrahigh-temperature structural applications, J. Alloys Compd., 2016, vol. 670. pp. 297–305. https://doi.org/10.1016/j.jallcom.2016.02.029
5. Andreev, D.E., Vdovin, Yu.S., Yukhvid, V.I., Sachkova, N.V., and Kovalev, I.D., Centrifugal SHS-metallurgy of composite materials Mo–Si–B, Russ. J. Phys. Chem. B, 2020, vol. 14, no. 2, pp. 261–265. https://doi.org/10.1134/S1990793120020025
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