Abstract— <p>The synthesis of materials based on the MAX phases of the 2Ti–Al–C system is studied. A free SHS compaction method is used; it combines self-propagating high-temperature synthesis (SHS) with high-temperature shear deformation. The combustion, molding, and structure formation of these materials under free SHS compaction conditions using initial Ti, Al, and C powder elements are investigated as functions of the dispersion of aluminum, technological regimes, and experimental conditions.</p>

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Laws of Combustion, Molding, and Phase-and-Structure Formation in Materials Based on the MAX Phases of the 2Ti–Al–C System under Free SHS Compression Conditions

  • A. D. Bazhina,
  • P. A. Stolin,
  • A. P. Chizhikov,
  • A. S. Ivanov,
  • M. S. Antipov,
  • N. Yu. Khomenko,
  • P. M. Bazhin

摘要

Abstract—

The synthesis of materials based on the MAX phases of the 2Ti–Al–C system is studied. A free SHS compaction method is used; it combines self-propagating high-temperature synthesis (SHS) with high-temperature shear deformation. The combustion, molding, and structure formation of these materials under free SHS compaction conditions using initial Ti, Al, and C powder elements are investigated as functions of the dispersion of aluminum, technological regimes, and experimental conditions.