MODELING OF HYDROMECHANICAL DRIVE SYSTEM OF WORKING BODY FOR MOBILE TECHNOLOGY MACHINE

An element of the working body (brush) of the aerodrome sweeper – a synchronous hydromechanical drive – is considered. It is based on the throttle flow divider of the non-spool type plunger setters, and it is driven by two hydraulic motors. Its mathematical model is offered. Special attention is giv...

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Main Authors: A. R. Temirkanov, A. T. Rybak
Format: Article
Language:Russian
Published: Don State Technical University 2014-12-01
Series:Advanced Engineering Research
Subjects:
Online Access:https://www.vestnik-donstu.ru/jour/article/view/362
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spelling doaj-0939dd7c4d6342deaa942d42e40c59762021-10-02T18:41:35ZrusDon State Technical UniversityAdvanced Engineering Research2687-16532014-12-0114417618510.12737/6907355MODELING OF HYDROMECHANICAL DRIVE SYSTEM OF WORKING BODY FOR MOBILE TECHNOLOGY MACHINEA. R. Temirkanov,0A. T. Rybak1Don State Technical University, RussiaDon State Technical University, RussiaAn element of the working body (brush) of the aerodrome sweeper – a synchronous hydromechanical drive – is considered. It is based on the throttle flow divider of the non-spool type plunger setters, and it is driven by two hydraulic motors. Its mathematical model is offered. Special attention is given to describing the stress state of the brush shaft when twisting under the variable load, and to identifying the effect of the shaft elastic properties on the dynamic properties of the synchronous hydromechanical system. In this paper, modeling of the synchronous hydromechanical brush drive system, unlike the conventional method, is based on the use of the reduced volume stiffness of the hydraulic system. This simplifies the modeling and allows performing a rapid analysis of the test drive operation which significantly reduces the design time of the drive system with the given performance properties.https://www.vestnik-donstu.ru/jour/article/view/362volume stiffness of the hydraulic actuatormathematical modelmobile technology machinehydraulic drivethrottle synchronizationtwisting shaft of working body.
collection DOAJ
language Russian
format Article
sources DOAJ
author A. R. Temirkanov,
A. T. Rybak
spellingShingle A. R. Temirkanov,
A. T. Rybak
MODELING OF HYDROMECHANICAL DRIVE SYSTEM OF WORKING BODY FOR MOBILE TECHNOLOGY MACHINE
Advanced Engineering Research
volume stiffness of the hydraulic actuator
mathematical model
mobile technology machine
hydraulic drive
throttle synchronization
twisting shaft of working body.
author_facet A. R. Temirkanov,
A. T. Rybak
author_sort A. R. Temirkanov,
title MODELING OF HYDROMECHANICAL DRIVE SYSTEM OF WORKING BODY FOR MOBILE TECHNOLOGY MACHINE
title_short MODELING OF HYDROMECHANICAL DRIVE SYSTEM OF WORKING BODY FOR MOBILE TECHNOLOGY MACHINE
title_full MODELING OF HYDROMECHANICAL DRIVE SYSTEM OF WORKING BODY FOR MOBILE TECHNOLOGY MACHINE
title_fullStr MODELING OF HYDROMECHANICAL DRIVE SYSTEM OF WORKING BODY FOR MOBILE TECHNOLOGY MACHINE
title_full_unstemmed MODELING OF HYDROMECHANICAL DRIVE SYSTEM OF WORKING BODY FOR MOBILE TECHNOLOGY MACHINE
title_sort modeling of hydromechanical drive system of working body for mobile technology machine
publisher Don State Technical University
series Advanced Engineering Research
issn 2687-1653
publishDate 2014-12-01
description An element of the working body (brush) of the aerodrome sweeper – a synchronous hydromechanical drive – is considered. It is based on the throttle flow divider of the non-spool type plunger setters, and it is driven by two hydraulic motors. Its mathematical model is offered. Special attention is given to describing the stress state of the brush shaft when twisting under the variable load, and to identifying the effect of the shaft elastic properties on the dynamic properties of the synchronous hydromechanical system. In this paper, modeling of the synchronous hydromechanical brush drive system, unlike the conventional method, is based on the use of the reduced volume stiffness of the hydraulic system. This simplifies the modeling and allows performing a rapid analysis of the test drive operation which significantly reduces the design time of the drive system with the given performance properties.
topic volume stiffness of the hydraulic actuator
mathematical model
mobile technology machine
hydraulic drive
throttle synchronization
twisting shaft of working body.
url https://www.vestnik-donstu.ru/jour/article/view/362
work_keys_str_mv AT artemirkanov modelingofhydromechanicaldrivesystemofworkingbodyformobiletechnologymachine
AT atrybak modelingofhydromechanicaldrivesystemofworkingbodyformobiletechnologymachine
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