Abstract <p>This article studies nickel-based metal-ceramic materials with the addition of nanoparticles of refractory compounds in order to improve their mechanical properties and wear resistance. It is shown that aluminum-magnesium spinel nanoparticles and yttrium oxide microparticles play a key role in strengthening of material and blocking grain growth during sintering, which improves the mechanical properties. Nanoparticles help reduce friction and wear. X-ray and microscopic analyses of the cermets based on the NiAl–Al<sub>2</sub>O<sub>3</sub> system are performed. The influence of sintering on the quality of composites is considered. The mechanical and tribological properties of composites with the addition of yttrium oxide and aluminum-magnesium spinel are determined. The influence of the structure and composition on the wear and friction of composites at different temperatures is considered. The microstructure and composition of wear tracks are analyzed, showing the improvement in the characteristics of composites with the addition of nanoparticles of refractory compounds. The importance of adding nanoparticles to improve the properties of nickel-based metal-ceramic materials in high-temperature applications is shown.</p>

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Development and Research of Cermets Based on the NiAl–Al2O3 System Modified with MgAl2O4 Nanoparticles and Y2O3 Microparticles

  • L. E. Agureev,
  • S. V. Savushkina,
  • A. A. Ashmarin,
  • E. A. Danilina,
  • A. V. Ivanov,
  • S. D. Ivanova,
  • S. A. Garibashvili

摘要

Abstract

This article studies nickel-based metal-ceramic materials with the addition of nanoparticles of refractory compounds in order to improve their mechanical properties and wear resistance. It is shown that aluminum-magnesium spinel nanoparticles and yttrium oxide microparticles play a key role in strengthening of material and blocking grain growth during sintering, which improves the mechanical properties. Nanoparticles help reduce friction and wear. X-ray and microscopic analyses of the cermets based on the NiAl–Al2O3 system are performed. The influence of sintering on the quality of composites is considered. The mechanical and tribological properties of composites with the addition of yttrium oxide and aluminum-magnesium spinel are determined. The influence of the structure and composition on the wear and friction of composites at different temperatures is considered. The microstructure and composition of wear tracks are analyzed, showing the improvement in the characteristics of composites with the addition of nanoparticles of refractory compounds. The importance of adding nanoparticles to improve the properties of nickel-based metal-ceramic materials in high-temperature applications is shown.