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Dynamic processes in technological technical systems

Ivan Nazarenko (), Oleg Dedov, Iryna Bernyk, Andrii Bondarenko, Andrii Zapryvoda, Maxim Nazarenko, Ivan Pereginets, Yevhen Mishchuk, Mykola Kyzminec, Serhii Oryshchenko, Oleg Fedorenko, Sergii Tsepelev, Artur Onyshchenko, Liudmyla Titova, Ivan Rogovskii, Mykola Ruchynskyi, Anatoly Svidersky, Volodymyr Slipetskyi, Maksym Delembovskyi, Igor Zalisko and Mykola Nesterenko
Additional contact information
Ivan Nazarenko: Kyiv National University of Construction and Architecture
Oleg Dedov: Kyiv National University of Construction and Architecture
Iryna Bernyk: Vinnytsia National Agrarian University
Andrii Bondarenko: Odessa State Academy of Civil Engineering and Architecture
Andrii Zapryvoda: Kyiv National University of Construction and Architecture
Maxim Nazarenko: Limited Liability Company ACADEMBUDSERVICE
Ivan Pereginets: Kyiv National University of Construction and Architecture
Yevhen Mishchuk: Kyiv National University of Construction and Architecture
Mykola Kyzminec: National Transport University
Serhii Oryshchenko: Kyiv National University of Construction and Architecture
Oleg Fedorenko: State Agency of Automobile Road of Ukraine
Sergii Tsepelev: State Agency of Automobile Road of Ukraine
Artur Onyshchenko: National Transport University
Liudmyla Titova: National University of Life and Environmental Sciences of Ukraine
Ivan Rogovskii: National University of Life and Environmental Sciences of Ukraine
Mykola Ruchynskyi: Kyiv National University of Construction and Architecture
Anatoly Svidersky: Kyiv National University of Construction and Architecture
Volodymyr Slipetskyi: Corporation "DSK – ZHITLOBUD"
Maksym Delembovskyi: Kyiv National University of Construction and Architecture
Igor Zalisko: Limited Liability Company "Drogobych Truck Crane Plant"
Mykola Nesterenko: National University "Yuri Kondratyuk Poltava Polytechnic"

in Monographs from PC TECHNOLOGY CENTER

Abstract: The monograph is devoted to the study of dynamic processes in technical systems for various technological purposes. A new approach and methodology is proposed for a systemic, synergistic approach, taking into account the influence of energy fields of physical and mechanical effects, transformation and inversion of types of energy action. Models and equations of motion of discrete and continuous dynamic systems, dispersed media in the spectrum of their processing are considered. Changes in the parameters of subsystems are revealed: working mediums, mechanical systems, the processes of their interaction are investigated on the basis of taking into account their stress-strain state. The processes of grinding, sorting, mixing, compaction of materials and media are considered. The intensification of physical and mechanical processes, methods and means of their creation was achieved by the systematization and complexity of approaches due to the joint consideration of the mutual influence of the internal properties of subsystems. The processes of material processing by superresonant, subresonant and multi-mode parameters are investigated. Methods for determining effective parameters and modes of their operation are proposed. The processes of grinding, sorting, mixing, compaction of the processing medium in the field of vibration load are described. As a result of the research carried out, new properties of the behavior of discrete-continuous systems under power load conditions are revealed. For the first time, the stresses and deformations of both working bodies and media were taken into account to create energy-saving vibration systems for various technological processes. The carried out scientific research makes it possible to obtain the laws of change in the state of dispersed media under the action of power loads by technical systems, new technological and design solutions were proposed.

Keywords: Technical systems; technological media; grinding; sorting; mixing; compaction; cavitation; models; continuous and discrete parameters; force loads; stresses; deformations; energy; synergetics; vibration amplitude; vibration frequency; laws of motion (search for similar items in EconPapers)
Date: 2021
ISBN: 978-617-7319-49-7
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Downloads: (external link)
http://monograph.com.ua/pctc/catalog/view/978-617-7319-49-7/98/376-4 (application/pdf)

Chapters in this book:

Introduction , pp 1-2 Downloads
Ivan Nazarenko
Assessment of the current state of parameters and operating modes of technological technical systems , pp 3-13 Downloads
Ivan Nazarenko, Oleg Dedov, Iryna Bernyk, Andrii Bondarenko, Andrii Zapryvoda, Maxim Nazarenko and Ivan Pereginets
Research of processes of producing materials by technical power loading systems , pp 14-42 Downloads
Ivan Nazarenko, Yevhen Mishchuk, Mykola Kyzminec, Serhii Oryshchenko, Oleg Fedorenko and Sergii Tsepelev
Research of technical systems of materials sorting processes , pp 43-56 Downloads
Ivan Nazarenko, Artur Onyshchenko, Serhii Oryshchenko, Oleg Fedorenko, Sergii Tsepelev and Liudmyla Titova
Research of technical systems of processes of mixing materials , pp 57-76 Downloads
Ivan Nazarenko, Iryna Bernyk, Oleg Dedov, Ivan Rogovskii, Mykola Ruchynskyi, Ivan Pereginets and Liudmyla Titova
Study of technical systems of materials compaction process , pp 77-93 Downloads
Ivan Nazarenko, Oleg Dedov, Andrii Bondarenko, Andrii Zapryvoda, Mykola Kyzminec, Maxim Nazarenko, Mykola Ruchynskyi, Anatoly Svidersky and Volodymyr Slipetskyi
Research of the processes of acoustic cavitation technology for processing dispersed media , pp 94-109 Downloads
Ivan Nazarenko and Iryna Bernyk
Study of reliability of technical systems reliability , pp 110-139 Downloads
Ivan Nazarenko, Maksym Delembovskyi, Oleg Dedov, Artur Onyshchenko, Ivan Rogovskii, Maxim Nazarenko and Igor Zalisko
Research of stress-strain state of elements of technological technical constructions , pp 140-179 Downloads
Ivan Nazarenko, Oleg Dedov, Maksym Delembovskyi, Yevhen Mishchuk, Mykola Nesterenko, Igor Zalisko and Volodymyr Slipetskyi

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Persistent link: https://EconPapers.repec.org/RePEc:baq:pcbook:978-617-7319-49-7.redif

DOI: 10.15587/978-617-7319-49-7

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