Growth of needle-like nanocrystals on the surface of oxidized Al and their effect in strengthening the Al-matrix composite
Narzulloev U. U. 1, Kutzhanov M. K. 1, Shchetinin I. V. 1, Loginov P. A. 1, Shtansky D. V. 1, Matveev A. T. 1
1National University of Science and Technology MISiS, Moscow, Russia
Email: umedjon.20129798@gmail.com, kutzhanov.m@misis.ru, ingvar@misis.ru, loginov.pa@misis.ru, shtansky@shs.misis.ru, matveev.at@misis.ru

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A new concept has been proposed for the creation of dispersed-strengthened composite materials (CM) due to the growth of oxide nanostructures (NS) on the surface of metal particles during the interaction of the surface oxide layer with a reaction oxide deposited on the oxidized surface of the metal particles. The concept is demonstrated using whisker-like nanocrystals (NWs) grown on the surface of oxidized Al particles. The new method ensures uniform distribution of NS on the surface of metal particles and, as a result, their uniform distribution in CM, which significantly simplifies the CM production technology. The concept covers metals with high oxygen affinity: Al, Mg, Ti, Ni, Zr. Keywords: needle crystals, aluminum, aluminum oxide, composites, dispersion strengthening.
  1. W. Abd-Elaziem, M. Khedr, A.H. Elsheikh, J. Liu, Y. Zeng, T.A. Sebae, M.A. Abd El-Baky, M.A. Darwish, W.M. Daoush, X. Li, Eng. Fail. Anal., 155, 107751 (2024). DOI: 10.1016/j.engfailanal.2023.107751
  2. S. Maiti, H. Sclar, R. Sharma, N. Vishkin, M. Fayena-Greenstein, J. Grinblat, M. Talianker, L. Burstein, N. Solomatin, O. Tiurin, Y. Ein-Eli, M. Noked, B. Markovsky, D. Aurbach, Adv. Funct. Mater., 31, 2008083 (2021). DOI: 10.1002/adfm.202008083
  3. E.I. Givargizov, A.A. Chernov, Kristallografiya, 18 (1), 147 (1973) (in Russian)
  4. V.G. Dubrovskii, N.V. Sibirev, G.E. Cirlin, Tech. Phys. Lett., 30 (8), 682 (2004). DOI: 10.1134/1.1792313
  5. V.G. Dubrovskii, G.E. Cirlin, I.P. Soshnikov, A.A. Tonkikh, N.V. Sibirev, Yu.B. Samsonenko, V.M. Ustinov, Phys. Rev. B, 71, 205325 (2005). DOI: 10.1103/PhysRevB.71.205325
  6. G.E. Cirlin, V.G. Dubrovskii, N.V. Sibirev, I.P. Soshnikov, Yu.B. Samsonenko, A.A. Tonkikh, V.M. Ustinov, Semiconductors, 39 (5), 557 (2005). DOI: 10.1134/1.1923565
  7. N.V. Sibirev, Y.S. Berdnikov, I.V. Shtrom, E.V. Ubyivovk, R.R. Reznik, G.E. Cirlin, Tech. Phys. Lett., 48 (2), 26 (2022). DOI: 10.21883/TPL.2022.02.52841.18869
  8. S.A. Ammer, V.S. Postnikov, Nitevidnye kristally (Voronezh. politekhn. in-t, Voronezh, 1974) (in Russian)
  9. M.K. Kutzhanov, A.T. Matveev, A.V. Bondarev, I.V. Shchetinin, A.S. Konopatsky, D.V. Shtansky, Metals, 13, 1696 (2023). DOI: 10.3390/met13101696

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