Design and performance analysis of a compact magnetorheological valve with multiple annular and radial gaps

A novel concept of a compact magnetorheological valve is proposed based on the advance characteristics of magnetorheological fluid. The structural design consists of a meandering pattern formed by multiple annular and radial gaps in order to extend the flow path length of magnetorheological fluid. E...

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Main Authors: Imaduddin, Fitrian, Mazlan, Saiful Amri, Zamzuri Hairi, Yazid, Mohd. Yazid, Izyan Iryani
Format: Article
Published: SAGE Publications Ltd. 2015
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Online Access:http://eprints.utm.my/id/eprint/58229/
http://dx.doi.org/10.1177/1045389X13508332
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spelling my.utm.582292022-04-10T03:35:31Z http://eprints.utm.my/id/eprint/58229/ Design and performance analysis of a compact magnetorheological valve with multiple annular and radial gaps Imaduddin, Fitrian Mazlan, Saiful Amri Zamzuri Hairi, Yazid Mohd. Yazid, Izyan Iryani T Technology (General) A novel concept of a compact magnetorheological valve is proposed based on the advance characteristics of magnetorheological fluid. The structural design consists of a meandering pattern formed by multiple annular and radial gaps in order to extend the flow path length of magnetorheological fluid. Extending the flow path of magnetorheological fluid is important in order to increase the density of effective area, so that the rheological properties of magnetorheological fluid can be widely regulated in a small size magnetorheological valve. The main objective of this article is to show that the pressure drop as one of the key performance indicators in a magnetorheological valve can be significantly increased using multiple annular and radial gaps configuration. In order to demonstrate the magnetorheological valve performance, simulation work using magnetic simulation software called finite element method-based software for magnetic simulation is conducted and combined with the pressure drop calculation using the derived magnetorheological valve model. Simulation results show that the magnetorheological valve with multiple annular and radial gaps is able to improve the achievable pressure drop. The discussion on the effect of gap size variations on the achievable pressure drop and the operational range of magnetorheological valve is also presented. SAGE Publications Ltd. 2015 Article PeerReviewed Imaduddin, Fitrian and Mazlan, Saiful Amri and Zamzuri Hairi, Yazid and Mohd. Yazid, Izyan Iryani (2015) Design and performance analysis of a compact magnetorheological valve with multiple annular and radial gaps. Journal of Intelligent Material Systems and Structures, 26 (9). pp. 1038-1049. ISSN 1045-389X http://dx.doi.org/10.1177/1045389X13508332 DOI:10.1177/1045389X13508332
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic T Technology (General)
spellingShingle T Technology (General)
Imaduddin, Fitrian
Mazlan, Saiful Amri
Zamzuri Hairi, Yazid
Mohd. Yazid, Izyan Iryani
Design and performance analysis of a compact magnetorheological valve with multiple annular and radial gaps
description A novel concept of a compact magnetorheological valve is proposed based on the advance characteristics of magnetorheological fluid. The structural design consists of a meandering pattern formed by multiple annular and radial gaps in order to extend the flow path length of magnetorheological fluid. Extending the flow path of magnetorheological fluid is important in order to increase the density of effective area, so that the rheological properties of magnetorheological fluid can be widely regulated in a small size magnetorheological valve. The main objective of this article is to show that the pressure drop as one of the key performance indicators in a magnetorheological valve can be significantly increased using multiple annular and radial gaps configuration. In order to demonstrate the magnetorheological valve performance, simulation work using magnetic simulation software called finite element method-based software for magnetic simulation is conducted and combined with the pressure drop calculation using the derived magnetorheological valve model. Simulation results show that the magnetorheological valve with multiple annular and radial gaps is able to improve the achievable pressure drop. The discussion on the effect of gap size variations on the achievable pressure drop and the operational range of magnetorheological valve is also presented.
format Article
author Imaduddin, Fitrian
Mazlan, Saiful Amri
Zamzuri Hairi, Yazid
Mohd. Yazid, Izyan Iryani
author_facet Imaduddin, Fitrian
Mazlan, Saiful Amri
Zamzuri Hairi, Yazid
Mohd. Yazid, Izyan Iryani
author_sort Imaduddin, Fitrian
title Design and performance analysis of a compact magnetorheological valve with multiple annular and radial gaps
title_short Design and performance analysis of a compact magnetorheological valve with multiple annular and radial gaps
title_full Design and performance analysis of a compact magnetorheological valve with multiple annular and radial gaps
title_fullStr Design and performance analysis of a compact magnetorheological valve with multiple annular and radial gaps
title_full_unstemmed Design and performance analysis of a compact magnetorheological valve with multiple annular and radial gaps
title_sort design and performance analysis of a compact magnetorheological valve with multiple annular and radial gaps
publisher SAGE Publications Ltd.
publishDate 2015
url http://eprints.utm.my/id/eprint/58229/
http://dx.doi.org/10.1177/1045389X13508332
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score 13.18916