Steklo i Keramika (Glass and Ceramics). Monthly scientific, technical and industrial journal

 

ISSN 0131-9582 (Online)

  • Continuous numbering: 1107
  • Pages: 18-21
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A number of charge compositions with anthracite as the main blowing agent have been developed. The density and strength of the synthesized samples have been determined. The process of formation of a cellular structure of a heat-insulating cellular glass as a result of thermoplastic sintering of a charge at a temperature of 600 - 950 ° C is considered.
Cand. tech. Sci. V. A. SMOLIY ( е-mail: This email address is being protected from spambots. You need JavaScript enabled to view it. ), A.S. KOSAREV, Dr. Sciences E. A. YATSENKO ( е-mail: This email address is being protected from spambots. You need JavaScript enabled to view it. ); South-Russian State Polytechnic University (NPI) named after M. I. Platova (Russia, Novocherkassk)
Ryabova AV, Yatsenko EA, Klimova LV et al. Protection of steel pipelines with glass-enamel coatings based on silica-containing raw materials of the far east of Russia // International Journal of Mechanical Engineering and Technology. 2018. V. 9. Is. 10.P. 769? 774. Yatsenko EA, Goltsman BM, Smoliy VA, Yatsenko LA Perspective and Experience of Use of Glass Fraction of Solid Municipal Waste in the Production of Silicate Heat-Insulating Materials // WASTE 2018. Proceedings of the 2018 IEEE International Conference? Management of Municipal Waste as an Important Factor of Sustainable Urban Development ?, 2018, P. 46? 48. Yatsenko EA, Smoliy VA, Goltsman BM et al. Optimal fractional composition of the charge for the synthesis of foam glass materials based on diatomite from the Chernoyarsk deposit // Glass and ceramics. 2018.? 10, p. 19? 21. Yatsenko EA, Smolii VA, Golitsman BM et al. Optimal Fractional Composition of Batch for Synthesis of Foam-Glass Materials Based on Diatomite from the Chernoyarskoe Deposit // Glass Ceram. 2018. V. 75. No. 9-10. P. 391? 393.? Yatsenko EA, Golitsman BM, Smolii VA et al. Study on the Possibility of Applying Organic Compounds as Pore-Forming Agents for the Synthesis of Foam Glass // Glass Physics and Chemistry. 2019. V. 45. No. 2.P. 150? 154. (WOS Impact Factor: 0.655; Scopus SJR: 0.25; doi: 10.1134 / S1087659619020135). Smoliy V.A., Yatsenko E.A., Goltsman B.M. 2018.? 8, p. 20? 24. ? Smolii VA, Kosarev AS, Yatsenko EA, Gol'tsman BM Structure Formation in Cellular Glass Based on Novocherkassk CHPP Ash-Slag Wastes // Glass Ceram. 2018. V. 75. No. 7-8. P. 303? 307.? Yatsenko EA, Golitsman BM, Kosarev AS et al. Synthesis of Foamed Glass Based on Slag and a Glycerol Pore-Forming Mixture // Glass Physics and Chemistry. 2018. V. 44. Is. 2.P. 152? 155. Smoliy VA, Kosarev AS, Yatsenko EA Influence of the granulometric composition of the charge on the technological and physicochemical properties of the granular porous silicate filler // Glass and Ceramics. 2017.? 8, p. 12? 14. ? Smolii VA, Kosarev AS, Yatsenko EA Influence of Granulometric Composition of Batch on Technological and Fhysical- Chemical Properties of Granular Porous Silicate Aggregate // Glass Ceram. 2017. V. 74. No. 7-8. P. 270? 272.? Smoliy V.A., Yatsenko E.A., Kosarev A.S., Goltsman B.M. Development of compositions and technological parameters for the synthesis of cellular heat-insulating building glass materials with a given density. 2016. ? 6.S. 22? 25. ? Smolii VA, Yatsenko EA, Kosarev AS, Gol? Tsman BM Development of Compositions and Technological Parameters for the Synthesis of Cellular Glass Heat-Insulation Construction Materials with Prescribed Density // Glass Ceram. 2016. V. 73. No. 5? 6. P. 219? 221.? Yatsenko EA, Smolii VA, Goltsman BM Development of Resource-Saving Cellular Glass Technology and Materials Based on it // Materials Science Forum. 2016. V. 870. P. 175? 180. Yatsenko EA, Goltsman BM, Smoliy VA et al. Investigation of the Influence of Foaming Agents? Type and Ratio on the Foaming and Reactionary Abilities of Foamed Slag Glass // Biosciences Biotechnology Research Asia. 2015. V. 12. P. 625? 632. Yatsenko EA, Smoliy VA, Goltsman BM, Kosarev AS Development of compositions and study of the properties of block and granulated foam glass made with the use of slag waste from thermal power plants // News of higher educational institutions. North Caucasian region. Ser. Technical science. 2012.? 5.S. 115? 119. Yatsenko EA, Zubekhin AP, Smoliy VA et al. Resource-saving technology of heat-insulating and decorative glass-composite material based on ash and slag waste // Glass and ceramics. 2015.? 6.S. 34? 38. ? Yatsenko EA, Zubekhin AP, Smolii VA et al. Resource-Conserving Technology of Heat-Insulation-Decorative Glass-Composite Material Based on Ash-Slag Wastes // Glass Ceram. 2015. V. 72. No. 5? 6. P. 216? 219.? Smoliy V.A., Kosarev A.S., Yatsenko E.A., Goltsman B.M. North Caucasian region. Ser. Technical science. 2015.? 4 (185). S. 128? 132. Smoliy V. A., Kosarev A. S., Yatsenko E. A. Cellular glass based on ash and slag waste for the manufacture of energy-efficient three-layer building panels. Glass and Ceramics. 2019.? 3.S. 28? 32. ? Smolii VA, Kosarev AS, Yatsenko EA Ash-slag based cellular glass for energy-efficient 3-ply construction panels // Glass Ceram. 2019. V. 76. No. 3? 4. P. 105? 108.

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Smoliy V. A., Kosarev A. S., Yatsenko E. A. Formers for Cellular Glass on the Basis of Ash and Slag Materials of TPP. Steklo i keramika. 2020:93(3):18-21. (in Russ). UDK 666.199:691.618.93