Theoretical studies of hydromechanical drive of mobile technological machine member

The work objective is to study a mathematical model of the synchronous hydromechanical brush actuator of the airdrome sweeper driven by two hydraulic motors based on the throttle flow divider of non-spool-type with plunger setters. The main task is to determine the effect of various design and opera...

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Main Authors: Alexander Timofeyevich Rybak, Alan Ruslanovich Temirkanov, Vladislav Maximovich Peshkov, Evgeny Sergeyevich Shamaylov
Format: Article
Language:Russian
Published: Don State Technical University 2015-06-01
Series:Advanced Engineering Research
Subjects:
Online Access:https://www.vestnik-donstu.ru/jour/article/view/15
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spelling doaj-9822a1e339fb4567b447a95361e78bca2021-10-02T18:41:35ZrusDon State Technical UniversityAdvanced Engineering Research2687-16532015-06-01152566410.12737/1161315Theoretical studies of hydromechanical drive of mobile technological machine memberAlexander Timofeyevich Rybak0Alan Ruslanovich Temirkanov1Vladislav Maximovich Peshkov2Evgeny Sergeyevich Shamaylov3Don State Technical University, Rostov-on-Don, Russian FederationDon State Technical University, Rostov-on-Don, Russian FederationDon State Technical University, Rostov-on-Don, Russian FederationDon State Technical University, Rostov-on-Don, Russian FederationThe work objective is to study a mathematical model of the synchronous hydromechanical brush actuator of the airdrome sweeper driven by two hydraulic motors based on the throttle flow divider of non-spool-type with plunger setters. The main task is to determine the effect of various design and operational data of a synchronous hydraulic drive of a mobile technological machine on its functional efficiency. A method of the theoretical research of an actuator mathematical model is used. The simulation of the brush synchronous hydro-drive system is based on the theory of the modified volume stiffness of the hydraulic system that allows simplify modeling and make a rapid analysis of the drive performance under study, considerably shortening the timeline of the study. The research results prove that the throttle flow divider of non-spool-type with the plunger regulating element allows providing the required properties of the synchronized system. The design parameters of the flow divider having an essential impact on the synchronous hydraulic system operation are recognized, and ways of its improvement are specified. The research results can be used in design and improvement of the synchronous hydromechanical drives of mobile technological machines.https://www.vestnik-donstu.ru/jour/article/view/15мобильная технологическая машинагидромеханический приводдроссельная синхронизацияделитель потока не золотникового типаматематическая модельрезультаты теоретических исследованийmobile technological machinehydromechanical drivethrottle synchronizationnon-spool-type flow dividermathematical modeltheoretical research results
collection DOAJ
language Russian
format Article
sources DOAJ
author Alexander Timofeyevich Rybak
Alan Ruslanovich Temirkanov
Vladislav Maximovich Peshkov
Evgeny Sergeyevich Shamaylov
spellingShingle Alexander Timofeyevich Rybak
Alan Ruslanovich Temirkanov
Vladislav Maximovich Peshkov
Evgeny Sergeyevich Shamaylov
Theoretical studies of hydromechanical drive of mobile technological machine member
Advanced Engineering Research
мобильная технологическая машина
гидромеханический привод
дроссельная синхронизация
делитель потока не золотникового типа
математическая модель
результаты теоретических исследований
mobile technological machine
hydromechanical drive
throttle synchronization
non-spool-type flow divider
mathematical model
theoretical research results
author_facet Alexander Timofeyevich Rybak
Alan Ruslanovich Temirkanov
Vladislav Maximovich Peshkov
Evgeny Sergeyevich Shamaylov
author_sort Alexander Timofeyevich Rybak
title Theoretical studies of hydromechanical drive of mobile technological machine member
title_short Theoretical studies of hydromechanical drive of mobile technological machine member
title_full Theoretical studies of hydromechanical drive of mobile technological machine member
title_fullStr Theoretical studies of hydromechanical drive of mobile technological machine member
title_full_unstemmed Theoretical studies of hydromechanical drive of mobile technological machine member
title_sort theoretical studies of hydromechanical drive of mobile technological machine member
publisher Don State Technical University
series Advanced Engineering Research
issn 2687-1653
publishDate 2015-06-01
description The work objective is to study a mathematical model of the synchronous hydromechanical brush actuator of the airdrome sweeper driven by two hydraulic motors based on the throttle flow divider of non-spool-type with plunger setters. The main task is to determine the effect of various design and operational data of a synchronous hydraulic drive of a mobile technological machine on its functional efficiency. A method of the theoretical research of an actuator mathematical model is used. The simulation of the brush synchronous hydro-drive system is based on the theory of the modified volume stiffness of the hydraulic system that allows simplify modeling and make a rapid analysis of the drive performance under study, considerably shortening the timeline of the study. The research results prove that the throttle flow divider of non-spool-type with the plunger regulating element allows providing the required properties of the synchronized system. The design parameters of the flow divider having an essential impact on the synchronous hydraulic system operation are recognized, and ways of its improvement are specified. The research results can be used in design and improvement of the synchronous hydromechanical drives of mobile technological machines.
topic мобильная технологическая машина
гидромеханический привод
дроссельная синхронизация
делитель потока не золотникового типа
математическая модель
результаты теоретических исследований
mobile technological machine
hydromechanical drive
throttle synchronization
non-spool-type flow divider
mathematical model
theoretical research results
url https://www.vestnik-donstu.ru/jour/article/view/15
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AT alanruslanovichtemirkanov theoreticalstudiesofhydromechanicaldriveofmobiletechnologicalmachinemember
AT vladislavmaximovichpeshkov theoreticalstudiesofhydromechanicaldriveofmobiletechnologicalmachinemember
AT evgenysergeyevichshamaylov theoreticalstudiesofhydromechanicaldriveofmobiletechnologicalmachinemember
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