Wear-Resistant Materials Synthesized in a Solar Furnace

Authors

  • Paizullakhanov MS Institute of Materials Science, Uzbekistan  Author
  • Kholmatov AA Fergana Polytechnic Institute, Uzbekistan Author
  • Sobirov MM Fergana Polytechnic Institute, Uzbekistan Author
  • Khamdamov B Djizak Polytechnic Institute, Uzbekistan Author

DOI:

https://doi.org/10.47363/JMSMR/2020(1)109

Keywords:

Solar Furnace, Concentrated Flow, Synthesis, Flux Density, Degree of Blackness

Abstract

The influence of technological modes of the Big Solar Furnace on the process of synthesis of materials from the melt is studied. It is shown that for the synthesis of materials with a set of specified properties, it is necessary to optimize the density and nature of the energy distribution of concentrated solar radiation in accordance with the degree of blackness, absorption coefficient, melting temperature and thermal conductivity of the charge. It is shown that the remelted state and a homogeneous fine-crystalline structure with an optimal combination of crystalline and amorphous phases, which leads to increased wear resistance of the material.

Author Biographies

  • Paizullakhanov MS, Institute of Materials Science, Uzbekistan 

    Institute of Materials Science, Uzbekistan 

  • Kholmatov AA, Fergana Polytechnic Institute, Uzbekistan


    Fergana Polytechnic Institute, Uzbekistan

  • Sobirov MM, Fergana Polytechnic Institute, Uzbekistan

    Fergana Polytechnic Institute, Uzbekistan 

  • Khamdamov B, Djizak Polytechnic Institute, Uzbekistan

    Djizak Polytechnic Institute, Uzbekistan 

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Published

2020-11-25