Yaroslavl, Yaroslavl, Russian Federation
Yaroslavl, Yaroslavl, Russian Federation
Yaroslavl, Yaroslavl, Russian Federation
Yaroslavl, Yaroslavl, Russian Federation
Yaroslavl, Yaroslavl, Russian Federation
graduate student
Yaroslavl, Yaroslavl, Russian Federation
V stat'e opisan mekhanizm obrazovaniya granul tekhnicheskogo ugleroda v protsesse granulirovaniya mokrym sposobom putem dobavleniya v pylyashchii tekhnicheskii uglerod spetsial'noi zhidkoi svyazuyushchei dobavki. Postavlena zadacha issledovaniya i obosnovana ego aktual'nost'. Privedeno opisanii konstruktsii laboratornoi granulyatsionnoi ustanovki vertikal'nogo tipa, sostoyashchei iz privoda, shtativa i korpusa. Osnovnym ehlementom korpusa yavlyaetsya val s ustanovlennymi na nem pal'tsami. Razrabotana metodika dlya provedeniya ehksperimenta. Predstavlen grafik zavisimosti nasypnoi plotnosti i moshchnosti ot vremeni protekaniya protsessa, na osnove kotorogo opredelena stadiinost' protsessa granulirovaniya: smachivanie pylyashchego tekhnicheskogo ugleroda, granulyatsionnyi perekhod, stadiya intensivnykh granulyatsionnykh izmenenii, stabilizatsiya granulyatsionnykh izmenenii. Kazhdaya iz ehtikh stadii v promyshlennykh granulyatorakh raspredelena po dline apparata i imeet razlichnye moshchnostnye kharakteristiki.
tekhnicheskii uglerod, granulirovanie, mokryi sposob, granula, mekhanizm formirovaniya, stadiinost' protsessa
1. Orlov V.Yu., Komarov A.M., Lyapina L.A. Proizvodstvo i ispol'zovanie tehnicheskogo ugleroda dlya rezin. Yaroslavl': Izd-vo Aleksandr Rutman, 2002, 512 s.
2. Kugatov P.V., Ivashkina E.A., Zhirnov B.S. Granular Carbon Adsorbent Based on Carbon Black and Synthetic Pitch. Solid Fuel Chem., 2023, 57, 423-427. DOI:https://doi.org/10.3103/S0361521923060034.
3. Makarenkov D.A., Nazarov V.I., Mavlyudova Ya.A. Osobennosti processa granulirovaniya toplivnyh kompoziciy metodom prokatki na rotornyh granulyatorah. Vestnik MGOU. Seriya: Estestvennye nauki, 2015, 1, 42-49.
4. Sevost'yanov V.S., Apatenko A.S., Shamgulov R.Yu., Procenko A.M. Razrabotka tehnicheskih sredstv dlya pererabotki i granulirovaniya tehnicheskogo ugleroda termoliznoy tehnologii. STIN, 2022, 3, 37-40.
5. Igumenova T.I., Shul'ga A.M. Problemy ispol'zovaniya piroliznogo tehnicheskogo ugleroda v proizvodstve shin: materialy LVIII otchetnoy nauch. konf. prepodavateley i nauchnyh sotrudnikov VGUIT. Ch 1. Voronezh: Izd-vo VGUIT, 2020, S. 104.
6. Zhuravskiy G.I. Tehnicheskiy uglerod iz produktov termoliza iznoshennyh shin. IFZh, 2020, 93(6), 1523-1528.
7. Ivanovskiy V.I. Tehnicheskiy uglerod. Processy i apparaty. Omsk: OAO «Tehuglerod», 2004, 228 s.
8. Vasil'ev P.S., Pavlova A.E. Sovershenstvovanie apparaturnogo oformleniya stadii granulirovaniya tehnicheskogo ugleroda mokrym sposobom. Energo- i resursosberezhenie: promyshlennost' i transport, 2023, 1(42), 11-19.
9. Rodionov D.A., Suvorina I.V., Knyazev Yu.V. Utilizaciya avtomobil'nyh shin. Molodoy uchenyy, 2016, 4(108), 936-937. URL: https://moluch.ru/archive/108/25962 (data obrascheniya: 09.03.2025).
10. Shamgulov R.Yu., Goncharov A.N. Razrabotka barabanno-vintovogo agregata dlya granulirovaniya tehnicheskogo ugleroda: materialy mezhdunar. nauch.-tehn. konf. molodyh uchenyh BGTU im. V.G. Shuhova. Belgorod: Izd-vo BGTU im. V.G. Shuhova, 2021, C. 1844-1847.
11. ASTM D1513-05(2023). Standard Test Method for Carbon Black, Pelleted – Pour Density. Annual Book of ASTM Standards, 2023, 09.01, 2 p.
12. Bortnikov V.G. Teoreticheskie osnovy i tehnologiya pererabotki plasticheskih mass: uchebnik. M.: INFRA-M, 2015, 480 s.
13. Koltsova T.B., Tsobkallo E.S., Meshcheryakova G.P. Modeling of Deformation Properties of Composite Material Filled with Technical Carbon. Fibre Chem., 2024, 56, 226-229. DOI:https://doi.org/10.1007/S10692-024-10559-2.
14. Kolipaka S.S., Junqueira L.A., Ross S., Garg V., Hossein Mithu MdS.H, Bhatt S., Douroumis D. An Advanced Twin-Screw Granulation Technology: The use of Non-Volatile Solvents with High Solubilizing Capacity. AAPS PharmSciTech, 2024, 25, 174. DOI:https://doi.org/10.1208/s12249-024-02890-y.
15. Kugatov P.V., Ivashkina E.A., Zhirnov B.S. Granular Carbon Adsorbent Based on Carbon Black and Synthetic Pitch. Solid Fuel Chem., 2023, 57, 423-427. DOI:https://doi.org/10.3103/S0361521923060034.