Development of Magnetorheological Resistive Exercise Device for Rowing Machine

Training equipment used by professional sportsmen has a great impact on their sport performance. Most universal exercisers may help only to improve the general physical condition due to the specific kinematics and peculiar resistance generated by their loading units. Training of effective techniques...

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Main Authors: Vytautas Grigas, Anatolijus Šulginas, Pranas Žiliukas
Format: Article
Language:English
Published: Hindawi Limited 2016-01-01
Series:Computational and Mathematical Methods in Medicine
Online Access:http://dx.doi.org/10.1155/2016/8979070
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spelling doaj-e2bbe9f9caa446249de0aef0721e56952020-11-25T02:41:36ZengHindawi LimitedComputational and Mathematical Methods in Medicine1748-670X1748-67182016-01-01201610.1155/2016/89790708979070Development of Magnetorheological Resistive Exercise Device for Rowing MachineVytautas Grigas0Anatolijus Šulginas1Pranas Žiliukas2Mechanical Engineering Department, Mechanical Engineering and Design Faculty, Kaunas University of Technology, Studentu 56-302, LT-54214 Kaunas, LithuaniaMechanical Engineering Department, Mechanical Engineering and Design Faculty, Kaunas University of Technology, Studentu 56-302, LT-54214 Kaunas, LithuaniaMechanical Engineering Department, Mechanical Engineering and Design Faculty, Kaunas University of Technology, Studentu 56-302, LT-54214 Kaunas, LithuaniaTraining equipment used by professional sportsmen has a great impact on their sport performance. Most universal exercisers may help only to improve the general physical condition due to the specific kinematics and peculiar resistance generated by their loading units. Training of effective techniques and learning of psychomotor skills are possible only when exercisers conform to the movements and resistance typical for particular sports kinematically and dynamically. Methodology of developing a magnetorheological resistive exercise device for generating the desired law of passive resistance force and its application in a lever-type rowing machine are described in the paper. The structural parameters of a controllable hydraulic cylinder type device were found by means of the computational fluid dynamics simulation performed by ANSYS CFX software. Parameters describing the magnetorheological fluid as non-Newtonian were determined by combining numerical and experimental research of the resistance force generated by the original magnetorheological damper. A structural scheme of the device control system was developed and the variation of the strength of magnetic field that affects the magnetorheological fluid circulating in the device was determined, ensuring a variation of the resistance force on the oar handle adequate for the resistance that occurs during a real boat rowing stroke.http://dx.doi.org/10.1155/2016/8979070
collection DOAJ
language English
format Article
sources DOAJ
author Vytautas Grigas
Anatolijus Šulginas
Pranas Žiliukas
spellingShingle Vytautas Grigas
Anatolijus Šulginas
Pranas Žiliukas
Development of Magnetorheological Resistive Exercise Device for Rowing Machine
Computational and Mathematical Methods in Medicine
author_facet Vytautas Grigas
Anatolijus Šulginas
Pranas Žiliukas
author_sort Vytautas Grigas
title Development of Magnetorheological Resistive Exercise Device for Rowing Machine
title_short Development of Magnetorheological Resistive Exercise Device for Rowing Machine
title_full Development of Magnetorheological Resistive Exercise Device for Rowing Machine
title_fullStr Development of Magnetorheological Resistive Exercise Device for Rowing Machine
title_full_unstemmed Development of Magnetorheological Resistive Exercise Device for Rowing Machine
title_sort development of magnetorheological resistive exercise device for rowing machine
publisher Hindawi Limited
series Computational and Mathematical Methods in Medicine
issn 1748-670X
1748-6718
publishDate 2016-01-01
description Training equipment used by professional sportsmen has a great impact on their sport performance. Most universal exercisers may help only to improve the general physical condition due to the specific kinematics and peculiar resistance generated by their loading units. Training of effective techniques and learning of psychomotor skills are possible only when exercisers conform to the movements and resistance typical for particular sports kinematically and dynamically. Methodology of developing a magnetorheological resistive exercise device for generating the desired law of passive resistance force and its application in a lever-type rowing machine are described in the paper. The structural parameters of a controllable hydraulic cylinder type device were found by means of the computational fluid dynamics simulation performed by ANSYS CFX software. Parameters describing the magnetorheological fluid as non-Newtonian were determined by combining numerical and experimental research of the resistance force generated by the original magnetorheological damper. A structural scheme of the device control system was developed and the variation of the strength of magnetic field that affects the magnetorheological fluid circulating in the device was determined, ensuring a variation of the resistance force on the oar handle adequate for the resistance that occurs during a real boat rowing stroke.
url http://dx.doi.org/10.1155/2016/8979070
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