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SYNTHESIS OF MATERIALS BY CONCENTRATED SOLAR RADIATION

M. S. PaizullakhanovInstitute of Materials Science SPA "Physics-Sun," Academy of Sciences of the Republic of Uzbekistan, 2-B Chingiz Aitmatov Str., Tashkent, 100084, UzbekistanZh. Z. ShermatovInstitute of Materials Science SPA "Physics-Sun," Academy of Sciences of the Republic of Uzbekistan, 2-B Chingiz Aitmatov Str., Tashkent, 100084, UzbekistanE. Z. NodirmatovInstitute of Materials Science SPA "Physics-Sun," Academy of Sciences of the Republic of Uzbekistan, 2-B Chingiz Aitmatov Str., Tashkent, 100084, UzbekistanO. T. RajamatovInstitute of Materials Science SPA "Physics-Sun," Academy of Sciences of the Republic of Uzbekistan, 2-B Chingiz Aitmatov Str., Tashkent, 100084, UzbekistanF. N. ErnazarovInstitute of Materials Science SPA "Physics-Sun," Academy of Sciences of the Republic of Uzbekistan, 2-B Chingiz Aitmatov Str., Tashkent, 100084, UzbekistanM. T. SulaimanovInstitute of Materials Science SPA "Physics-Sun," Academy of Sciences of the Republic of Uzbekistan, 2-B Chingiz Aitmatov Str., Tashkent, 100084, UzbekistanSh. R. NurmatovInstitute of Materials Science SPA "Physics-Sun," Academy of Sciences of the Republic of Uzbekistan, 2-B Chingiz Aitmatov Str., Tashkent, 100084, UzbekistanN.N. CherendaBelarusian State University, 4 Nezavisimost Ave., Minsk, 220030, Belarus; South Ural State University, 76 Lenin Ave., Chelyabinsk, 454080, Russia
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Annotatsiya

The influence of technological parameters of the Grand Solar Furnace on the structure and properties of materials synthesized from the melt have been studied in this work. It was found that the crystalline state, phase composition, microstructure and mechanical properties of pyroxene group material were strongly dependent on the flux density of solar radiation and cooling speed. The findings showed that homogeneous disperse microstructure with optimal combination of crystalline and amorphous phases received from the melt led to the wear resistance increase.

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