Determiantion of energy characteristics of material destruction in the crushing chamber of the vibration crusher

The crushing equipment is characterized by a significant energy-consuming system during the crushing workflow. The current trend in the development of such processes puts forward requirements for the development of new or improvement of existing energy-saving equipment. The essence of the solution t...

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Main Authors: Ivan Nazarenko, Yevhen Mishchuk, Dmitry Mishchuk, Mykola Ruchynskyi, Ivan Rogovskii, Liudmyla Mikhailova, Liudmyla Titova, Mykola Berezovyi, Ruslan Shatrov
Format: Article
Language:English
Published: PC Technology Center 2021-08-01
Series:Eastern-European Journal of Enterprise Technologies
Subjects:
Online Access:http://journals.uran.ua/eejet/article/view/239292
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spelling doaj-55bfc5d799714b2084e57e18577fc44b2021-09-03T14:07:07ZengPC Technology CenterEastern-European Journal of Enterprise Technologies1729-37741729-40612021-08-0147(112)414910.15587/1729-4061.2021.239292277003Determiantion of energy characteristics of material destruction in the crushing chamber of the vibration crusherIvan Nazarenko0https://orcid.org/0000-0002-1888-3687Yevhen Mishchuk1https://orcid.org/0000-0002-7850-0975Dmitry Mishchuk2https://orcid.org/0000-0002-8263-9400Mykola Ruchynskyi3https://orcid.org/0000-0002-9362-292XIvan Rogovskii4https://orcid.org/0000-0002-6957-1616Liudmyla Mikhailova5https://orcid.org/0000-0002-3419-5446Liudmyla Titova6https://orcid.org/0000-0001-7313-1253Mykola Berezovyi7https://orcid.org/0000-0001-9221-9787Ruslan Shatrov8https://orcid.org/0000-0002-3596-0146Kyiv National University of Construction and ArchitectureKyiv National University of Construction and ArchitectureKyiv National University of Construction and ArchitectureKyiv National University of Construction and ArchitectureNational University of Life and Environmental Sciences of UkraineState Agrarian and Engineering University in PodiliaNational University of Life and Environmental Sciences of UkraineNational University of Life and Environmental Sciences of UkraineNational University of Life and Environmental Sciences of UkraineThe crushing equipment is characterized by a significant energy-consuming system during the crushing workflow. The current trend in the development of such processes puts forward requirements for the development of new or improvement of existing energy-saving equipment. The essence of the solution to the problem in this work is determined by using resonant modes, which are inherently the most effective. The practical implementation of the resonance mode has been achieved taking into account the conditions for the interaction of the resonant vibration crusher with the material at the stages of its destruction. The degree of the stress-strain state of the material is taken into account, which was a prerequisite for identifying the potential for the development of a vibration load. Composed equations of motion based on a substantiated discrete-continuous model of a vibration crusher and processing material. An approach is applied to determine the stepwise destruction of the material with the determination of the required degree of energy. This methodological approach made it possible to reveal the nature of the process of material destruction, where energy costs at the stages of crack formation, their development and final destruction are taken into account. It was revealed that the greatest energy consumption during the operation of crushers goes into the kinetic energy of the crushing plates and the potential energy of deformation of the springs. The proposed model is common for any design of a vibration machine and its operating modes. The stable resonance mode has made it possible to significantly reduce the energy consumption for the course of the technological process of material grinding. The results obtained are used to improve the calculation methods for vibratory jaw and cone crushers that implement the corresponding energy-saving stable zones of the working process.http://journals.uran.ua/eejet/article/view/239292vibration crushercrushing chamberresonant modeprocess of destructionenergystressdeformation
collection DOAJ
language English
format Article
sources DOAJ
author Ivan Nazarenko
Yevhen Mishchuk
Dmitry Mishchuk
Mykola Ruchynskyi
Ivan Rogovskii
Liudmyla Mikhailova
Liudmyla Titova
Mykola Berezovyi
Ruslan Shatrov
spellingShingle Ivan Nazarenko
Yevhen Mishchuk
Dmitry Mishchuk
Mykola Ruchynskyi
Ivan Rogovskii
Liudmyla Mikhailova
Liudmyla Titova
Mykola Berezovyi
Ruslan Shatrov
Determiantion of energy characteristics of material destruction in the crushing chamber of the vibration crusher
Eastern-European Journal of Enterprise Technologies
vibration crusher
crushing chamber
resonant mode
process of destruction
energy
stress
deformation
author_facet Ivan Nazarenko
Yevhen Mishchuk
Dmitry Mishchuk
Mykola Ruchynskyi
Ivan Rogovskii
Liudmyla Mikhailova
Liudmyla Titova
Mykola Berezovyi
Ruslan Shatrov
author_sort Ivan Nazarenko
title Determiantion of energy characteristics of material destruction in the crushing chamber of the vibration crusher
title_short Determiantion of energy characteristics of material destruction in the crushing chamber of the vibration crusher
title_full Determiantion of energy characteristics of material destruction in the crushing chamber of the vibration crusher
title_fullStr Determiantion of energy characteristics of material destruction in the crushing chamber of the vibration crusher
title_full_unstemmed Determiantion of energy characteristics of material destruction in the crushing chamber of the vibration crusher
title_sort determiantion of energy characteristics of material destruction in the crushing chamber of the vibration crusher
publisher PC Technology Center
series Eastern-European Journal of Enterprise Technologies
issn 1729-3774
1729-4061
publishDate 2021-08-01
description The crushing equipment is characterized by a significant energy-consuming system during the crushing workflow. The current trend in the development of such processes puts forward requirements for the development of new or improvement of existing energy-saving equipment. The essence of the solution to the problem in this work is determined by using resonant modes, which are inherently the most effective. The practical implementation of the resonance mode has been achieved taking into account the conditions for the interaction of the resonant vibration crusher with the material at the stages of its destruction. The degree of the stress-strain state of the material is taken into account, which was a prerequisite for identifying the potential for the development of a vibration load. Composed equations of motion based on a substantiated discrete-continuous model of a vibration crusher and processing material. An approach is applied to determine the stepwise destruction of the material with the determination of the required degree of energy. This methodological approach made it possible to reveal the nature of the process of material destruction, where energy costs at the stages of crack formation, their development and final destruction are taken into account. It was revealed that the greatest energy consumption during the operation of crushers goes into the kinetic energy of the crushing plates and the potential energy of deformation of the springs. The proposed model is common for any design of a vibration machine and its operating modes. The stable resonance mode has made it possible to significantly reduce the energy consumption for the course of the technological process of material grinding. The results obtained are used to improve the calculation methods for vibratory jaw and cone crushers that implement the corresponding energy-saving stable zones of the working process.
topic vibration crusher
crushing chamber
resonant mode
process of destruction
energy
stress
deformation
url http://journals.uran.ua/eejet/article/view/239292
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