The thermal vacuum process features of continuous production of finely-divided materials

Authors

  • Иосиф Степанович Мысак National University «Lviv Polytechnic», 12 Bandera street, Lviv, Ukraine, 79013, Ukraine https://orcid.org/0000-0003-2064-7015
  • Владимир Александрович Кутовой National Scientific Center “Kharkov Institute of Physics and Technology” National Academy of Sciences in Ukraine 1, Akademicheskaya Street, Kharkov, 61108, Ukraine, Ukraine
  • Анна Сергеевна Луценко National Scientific Center “Kharkov Institute of Physics and Technology” National Academy of Sciences in Ukraine 1, Akademicheskaya Street, Kharkov, 61108, Ukraine, Ukraine
  • Алиса Александровна Николаенко National Scientific Center “Kharkov Institute of Physics and Technology” National Academy of Sciences in Ukraine 1, Akademicheskaya Street, Kharkov, 61108, Ukraine, Ukraine

DOI:

https://doi.org/10.15587/2313-8416.2014.30732

Keywords:

thermal vacuum unit, dispersed material, energy saving, drying, grinding, vacuum

Abstract

The scientific and technical development of energy-efficient techniques of drying and pulverizing of dispersed materials is conducted. Drying duration and pulverizing is measured in seconds due to the maximum evaporation surface, rapid heating of the dried material, reducing the environment pressure. It is shown a diagram of thermal vacuum unit construction, allowing accelerate the drying process of dispersed materials and simultaneously obtain a finely-divided powder.

Author Biographies

Иосиф Степанович Мысак, National University «Lviv Polytechnic», 12 Bandera street, Lviv, Ukraine, 79013

Department of Thermal Engineering and Thermal Power Stations (TETPS)

Владимир Александрович Кутовой, National Scientific Center “Kharkov Institute of Physics and Technology” National Academy of Sciences in Ukraine 1, Akademicheskaya Street, Kharkov, 61108, Ukraine

PhD, Physical-Mathematical Sciences, Senior Scientific Officer

Анна Сергеевна Луценко, National Scientific Center “Kharkov Institute of Physics and Technology” National Academy of Sciences in Ukraine 1, Akademicheskaya Street, Kharkov, 61108, Ukraine

Junior Researcher

Алиса Александровна Николаенко, National Scientific Center “Kharkov Institute of Physics and Technology” National Academy of Sciences in Ukraine 1, Akademicheskaya Street, Kharkov, 61108, Ukraine

Junior Researcher

References

Mushtaev, V. I., Ulyanov, V. M. (1998). Sushka dispersnih materialoоv. Moscow Himiya, 323.

Atаmаnuk, V. M., Gumnitskiy, Ya. М. (2013). Naukоvі osnоvi fіltratsіynоgо sushіnnya duspersnih mаtеrіаlіv. Lvіv: Vidаvnutsvо Lvіvskoi pоlіtеhnікi, 256.

Brоdskiy, R. Е., Virchеnkо, Yu. P. (2013). Mеdlеnnаya frаgmеntаtsiya pri kvаdrаtichnоm zаkоnе drоblеniya. Vеstnik Khеrsоnskоgо nаtsiоnаlnоgо tеhnichеskоgо univеrsitеtа, 2 (47), 63–66.

Ziff, R. M. (1992). An explicit solutions to a discrete fragmentation model. Journal of Physics A: Mathematical and General, 25 (9), 2569–2576. doi: 10.1088/0305-4470/25/9/027

Kutovoy, V. А., Kazarinov, Yu. G., Lutsenko, А. S., Nikolaenko, А. А., Tkachenko, V. I. (2014). Теrmоvаkuumniy metod polucheniya nanodispersnikh materialov. Voprosi atomnoynauki i tehniki, 103/2(90), 153–157.

Kutovoy, V. О. (2007). Patent 81138 Ukraina. МPK F26B9/06. Pristriy dlya termavakuumnogo sushinnya. №а200507488; zayav. 27.07.2005; opubl. 10.12.07. Bul. № 20, 5.

Published

2014-12-22

Issue

Section

Technical Sciences