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Alymov Mikhail Ivanovich

Publications in Math-Net.Ru

  1. Passivation of compact samples from pyrophoric iron nanopowders during their interaction with air

    Fizika Goreniya i Vzryva, 57:3 (2021),  79–87
  2. Interaction dynamics between compacted pyrophoric nickel nanopowders and air

    Mendeleev Commun., 31:4 (2021),  567–569
  3. Interaction of compact samples made of pyrophoric iron nanopowders with air

    Mendeleev Commun., 30:3 (2020),  380–382
  4. The use of gas extrusion for the synthesis of a high-strength composite based on a 5xxx series aluminum alloy strengthened with carbon nanostructures

    Pisma v Zhurnal Tekhnicheskoi Fiziki, 46:5 (2020),  7–10
  5. Synthesis of tungsten nanopowders and modes of their combustion and passivation

    Mendeleev Commun., 29:3 (2019),  355–357
  6. Evolution of multiwalled carbon nanotubes and related nanostructures during the formation of alumomatrix composite materials

    Pisma v Zhurnal Tekhnicheskoi Fiziki, 45:2 (2019),  22–25
  7. The modes of combustion of copper nanopowders

    Mendeleev Commun., 28:4 (2018),  447–449
  8. On the brittle fracture theory by Ya. Frenkel and A. Griffith.

    Chebyshevskii Sb., 18:3 (2017),  381–393
  9. Combustion and passivation of nickel nanoparticles

    Mendeleev Commun., 27:6 (2017),  631–633
  10. Passivation of iron nanoparticles at subzero temperatures

    Mendeleev Commun., 27:5 (2017),  482–484
  11. Interaction of chemical processes over Pt wire and reactive flows of flame penetration through obstacles in the presence of iron nanopowder

    Mendeleev Commun., 27:4 (2017),  387–389
  12. Synthesis and characterization of passivated iron nanoparticles

    Mendeleev Commun., 26:6 (2016),  549–551
  13. Temporal characteristics of ignition and combustion of iron nanopowders in the air

    Mendeleev Commun., 26:5 (2016),  452–454
  14. Size effect on the melting point of ultrafinely dispersed tin and mercury powders

    Fizika Tverdogo Tela, 34:11 (1992),  3590–3592


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