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Study of the rotary cleaners of the holes of cylindrical sieves on a vibrocentrifugal separator

Treść / Zawartość
Identyfikatory
Warianty tytułu
PL
Badanie obrotowych oczyszczarek otworów sit cylindrycznych na separatorze wibrowirówkowym
Języki publikacji
EN
Abstrakty
EN
This document presents the results of research into the process of cleaning the holes of the vibrocentrifugal separator cylindrical sieves with rotary cleaners. The study of the nature of the movement of rotary sieve cleaners was carried out using electrooscillography methods. An original recording device with a sensor system was developed, which ensured the determination of the speed of the cylindrical sieve and the movement of the rotary cleaners of the sieve holes. The efficiency of the separator was confirmed experimentally.
PL
W dokumencie przedstawiono wyniki badań procesu oczyszczania otworów sit cylindrycznych wibroseparatora odśrodkowego za pomocą oczyszczaczy obrotowych. Badania natury ruchu oczyszczaczy sit obrotowych przeprowadzono metodami elektrooscylograficznymi. Opracowano autorskie urządzenie rejestrujące wraz z układem czujników, które umożliwiało określenie prędkości obrotowej sita cylindrycznego oraz ruchu oczyszczaczy obrotowych otworów sitowych. Skuteczność separatora została potwierdzona doświadczalnie.
Rocznik
Strony
160--163
Opis fizyczny
Bibliogr. 23 poz., rys.
Twórcy
  • Institute of Mechanics and Automation of Agricultural Production, 11/1 Vokzalna St., Hlevakha, 08631, Ukraine
autor
  • National University of Life and Environmental Sciences of Ukraine, Heroyiv Oborony st., 15, Kyiv - 03041, Ukraine
  • National University of Life and Environmental Sciences of Ukraine, Heroyiv Oborony st., 15, Kyiv - 03041, Ukraine
  • Institute of Mechanics and Automation of Agricultural Production, 11/1 Vokzalna St., Hlevakha, 08631, Ukraine
  • National University of Life and Environmental Sciences of Ukraine, Heroyiv Oborony st., 15, Kyiv - 03041, Ukraine
  • National University of Life and Environmental Sciences of Ukraine, Heroyiv Oborony st., 15, Kyiv - 03041, Ukraine
  • National University of Life and Environmental Sciences of Ukraine, Heroyiv Oborony st., 15, Kyiv - 03041, Ukraine
Bibliografia
  • [1] Piven M., Volokh V., Piven A., Kharchenko S. Research into the process of loading the surface of a vibrosieve when a loose mixture is fed unevenly. Eastern-European Journal of Enterprise Technologies, 6(96) (2018), No. 1, 62-70. https://doi.org/10.15587/1729-4061.2018.149739
  • [2] Adamchuk V., Bulgakov V., Gadzalo I., Ivanovs S., Stepanenko S., Holovach I., Ihnatiev Y. Theoretical study of vibrocentrifugal separation of grain mixtures on a sieveless seed-cleaning machine. Rural sustainability research, 46(341), (2021), 116-124. https://doi:10.2478/plua-2021-0023
  • [3] Stepanenko S., Aneliak M., Kuzmych A., Kustov S., Lysaniuk V. Improving the efficiency of harvesting sunflower seed crops. INMATEH - Agricultural Engineering, 67, (2022) No. 2, 331-340. https://doi.org/10.35633/inmateh-67-34
  • [4] Kroulík M., Hůla J., Rybka A., Honzík I. Pneumatic conveying characteristics of seeds in a vertical ascending airstream. Research in Agricultural Engineering, 62(2) (2016), 56-63. https://doi.org/10.17221/32/2014-rae
  • [5] Kharchenko S., Borshch Y., Kovalyshyn S., Piven M., Abduev M., Miernik A., Popardowski E., Kiełbasa P. Modeling of aerodynamic separation of preliminarily stratified grain mixture in vertical pneumatic separation duct. Applied Sciences, 11(10) (2021), 4383. https://doi.org/10.3390/app11104383
  • [6] Olshanskii V., Olshanskii A., Kharchenko S., Kharchenko F. Analytical method for determining porosity in the layer of vibro separated grain mixture. Teka Komisji Motoryzacji i Energetyki Rolnictwa, 16(4) (2016), 51-55.
  • [7] Tishchenko L., Kharchenko S., Kharchenko F., Bredykhin V., Tsurkan O. Identification of a mixture of grain particle velocity through the holes of the vibrating sieves grain separators. Eastern-European Journal of Enterprise Technologies, 2 (80) (2016), No. 7, 63-69. https://doi.org/10.15587/1729- 4061.2016.65920
  • [8] Mykhailov Y., Zadosna N., Postnikova M., Pedchenko G., Khmelovskyi V., Bondar M., Ionichev A., Kozdęba M., Tomaszewska-Górecka W. Energy Assessment of the Pneumatic Sieve Separator for Agricultural Crops. Agricultural Engineering, 25(1) (2021), 147-156. https://doi.org/10.2478/agriceng-2021-0012
  • [9] Bredykhin V., Pak A., Gurskyi P., Denisenko S., Bredykhina K. Improving the mechanical-mathematical model of pneumatic vibration centrifugal fractionation of grain materials based on their density. Eastern-European Journal of Enterprise Technologies, 4(112) (2021), No. 1, 54-60. https://doi.org/10.15587/1729-4061.2021.236938
  • [10] Kaletnik H., Solona O., Kotov B., Stepanenko S., Shvydia V., Kalinichenko R., Tverdokhlib I., Polievoda Y. The usage of the elemental base of the vibratory mill with the spatial circulation movement of material to create drying rig. Przegląd Elektrotechniczny, 3 (2024). 232-237. https://doi.org/10.15199/48.2024.03.41
  • [11] Volkhonov M., Bushuev I., Volkhonov R., Pashin E. Development of a technique to control and ensure the predefined porosity of a grain layer in the pneumo-separating channel at a grain heap cleaner. Eastern-European Journal of Enterprise Technologies, 4(100) (2019), No. 1, 46–53. https://doi.org/10.15587/1729-4061.2019.174390
  • [12] Kolodiy A., Kyurchev S. Мathematical description of the behavior of sunflower kernels in the air flow separation units. MOTROL. Commission of Motorization and Energetics in Agriculture, 17(9) (2015), 13-18.
  • [13] Nesterenko A., Leshchenko S., Vasylkovskyi O., Petrenko D. Analytical assessment of the pneumatic separation quality in the process of grain multilayer feeding. INMATEH - Agricultural Engineering, 53 (2017), No, 3, 65-70.
  • [14] Haili Z., Zhanqi H., Qinglong Z., Qiang W., Xuan L. Numerical study on gas-solid flow characteristics of ultra-light particles in a cyclone separator. Powder Technol. 344 (2019) 784-796. https://doi:10.1016/j.powtec.2018.12.054
  • [15] Farsi C., Amroune S., Moussaoui M., Mohamad B., Benkherbache H. High-Gradient Magnetic Separation Method for Weakly Magnetic Particles: an Industrial Application, Metallofiz. Noveishie Tekhnol., 41 (2019), No. 8, 1103-1119. https://doi.org/10.15407/mfint.41.08.1103
  • [16] Kotov B., Stepanenko S., Tsurkan O., Hryshchenko V., Pantsyr Y., Garasymchuk I., Spirin A., Kupchuk I. Fractioning of grain materials in the vertical ring air channel during electric field imposition, Przegląd Elektrotechniczny 1 (2023), 100-104. https://doi:10.15199/48.2023.01.19
  • [17] Zagirnyak M. The Substantiation of the Calculation Expression for the Extraction Force of Magnetic Separators, Przegląd Elektrotechniczny 1 (2004), 264-268. https://doi:10.15199/48.2024.01.55
  • [18] Zhou Y., Shen W. Numerical simulation of particle classification in new multi-product classifier, Chemical Engineering Research and Design, 177 (2022), 484-492. https://doi.org/10.1016/j.cherd.2021.11.012
  • [19] Stepanenko S., Kotov B., Kuzmych A., Kalinichenko R., Hryshchenko V. Research of the process of air separation of grain material in a vertical zigzag channel. Journal of Central European Agriculture, 2023, 24(1), p.225-235. https://doi:10.5513/JCEA01/24.1.3732
  • [20] Aliiev E., Gavrilchenko A., Tesliuk H., Tolstenko A., Koshul’ko V. Improvement of the sunflower seed separation process efficiency on the vibrating surface. Acta Periodica Technologica, 50 (2019), 12-22. https://doi.org/10.2298/apt1950012a
  • [21] Stepanenko, S.; Kotov, B.; Kuzmych, A.; Shvydia, V.; Kalinichenko, R.; Kharchenko, S.; Shchur, T.; Kocira, S.; Kwaśniewski, D.; Dziki, D. To the Theory of Grain Motion in an Uneven Air Flow in a Vertical Pneumatic Separation Channel with an Annular Cross Section. Processes 2022, 10, 1929. https://doi.org/10.3390/pr10101929
  • [22] Munder S., Argyropoulos D., Müller J. Class-based physical properties of air-classified sunflower seeds and kernels. Biosystems Engineering, 164 (2017), 124-134. https://doi.org/10.1016/j.biosystemseng.2017.10.005
  • [23] Aneliak M., Kuzmych A., Stepanenko S., Lysaniuk V. Study of the process of threshing leguminous grass seeds with a drumtype threshing device. INMATEH - Agricultural Engineering, 71 (2023), No. 3, 83-92. https://doi.org/10.35633/inmateh-71-06
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa nr POPUL/SP/0154/2024/02 w ramach programu "Społeczna odpowiedzialność nauki II" - moduł: Popularyzacja nauki i promocja sportu (2025).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-af6bc64a-1512-4039-b8a8-e229f82aac97
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