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Substantiation of key parameters of a centrifugal mill intended for grinding solid residue from the pyrolysis of used automobile tyres

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The study presents the results of an investigation into centrifugal mills with an energy-saving working body. Rational geometric parameters of the working body of the centrifugal mill, which grinds the solid residue from the pyrolysis of used tyres, have been justified on the criterion of the lowest specific energy consumption during the grinding process. A method to determine the dependence of the in-grinding power consumption on the basic parameters of the working body has been developed, while an analytical expression to determine the power consumption for grinding the solid residue from the pyrolysis of used tyres has been obtained. It has been found that the power consumption in the grinding process linearly depends on the rotational speed of the working body, which is to the 0.3 power on the average size of solid particles.
Rocznik
Tom
Strony
133--141
Opis fizyczny
Bibliogr. 7 poz.
Twórcy
autor
  • Faculty of Mechanical, Ukrainian State University of Chemical Technology, 5 Gagarin Street, 49005, Dnepropetrovsk, Ukraine
  • Faculty of Mechanical, Ukrainian State University of Chemical Technology, 5 Gagarin Street, 49005, Dnepropetrovsk, Ukraine
Bibliografia
  • 1. Бардовский А. Д., Л. А. Летин, Н. М. Кряжев, И. И. Дерба, Е. В. Пухучкин. 2002. Определение параметров центробежной мельницы роторно-струйного измельчения при помоле отходов карбонатного сырья. Горный информационно- аналитический бюллетень 1: 204-206. Мoscow: МГГУ. [In Russia: Bardovskiy A. D., L. A. Letin, N. M. Kryazhev, I. I. Derba, E.V. Pukhuchkin. 2002. „Defining the parameters of a centrifugal rotor-jet mill when milling waste carbonate raw materials”. Mining Informational and Analytical Bulletin 1: 204-206. Moscow: Moscow State Humanities University.]
  • 2. Виноградов Б. В., И. О. Осташко. 2009. Об энергетических характеристиках центробежных мельниц с S-образным рабочим органом. Вісник НТУ „ХПІ” 25: 164-169. [In Ukraine: Vinogradov B. V., I. O. Ostashko. 2009. „On the energy performance of centrifugal mills with an S-shaped working body”. Bulletin of the Kharkiv Polytechnic University 25: 164-169. Kharkiv: Kharkiv Polytechnic University].
  • 3. Виноградов Б. В., И. А. Осташко, В. И. Емельяненко. 2009. „Измельчение твердых остатков процесса пролиза изношенных автомобильных шин в центробежной мельнице”. Вопросы химии и химической технологии 2: 159-161. [In Ukraine: Vinogradov B. V., I. O. Ostashko, V. I. Emel'yanenko. „Shredding of solid residue pyrolysis of used tyres in a centrifugal mill”. Issues of Chemistry and Chemical Technology 2: 159-161. Dnepropetrovsk: Ukrainian State University of Chemical Technology].
  • 4. PL 216901 B1. Układ mechaniczny strojony w sposób płynny. [In Polish: Smoothly tuned mechanical system.]. Homišin Jaroslav. 2014. Warsaw: Polish Patent Office.
  • 5. Grega Robert, Jozef Krajňák. 2012. „The pneumatic dual-mass flywheel”. Scientific Journal of Silesian University of Technology. Series Transport 76: 19-24. ISSN: 0209-3324.
  • 6. Homišin J., P. Kaššay, M. Urbanský. 2011. „High-flexibility characteristics of pneumatic flexible shaft couplings”. Pneumatyka 79(2): 26-29. ISSN 1426-6644.
  • 7. Mantič M., J. Kuľka, J. Krajňák, M. Kopas, M. Schneider. 2015. „Influence of selected digitization methods on final accuracy of a 3D model”. Production Management and Engineering Sciences: 475-480. Proceedings of the International Conference on Engineering Science and Production Management (ESPM 2015). Tatranská Štrba, High Tatras Mountains, Slovakia, 16th -17th April 2015. Edited by Majerník M., D. Naqib, B. Martin. Boca Raton, FL: CRC Press, Taylor & Francis Group. ISBN: 978-1-138- 02856-2.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-36438bf6-cb79-4b96-aa40-40868542418d
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