The Design And Simulation Of Flow Mode Electrorheological Damper

Electrorheological (ER) Damper Is A Damper That Utilizes Electrorheological Fluid As The Working Fluid. By Changing The Strength Of Applied Electric Field To The Fluid, The Flow Resistance Of The Fluid Changes And Hence The Damping Characteristic Could Be Adjusted. This Paper Provides Theoretical F...

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Main Authors: Mukhlis, Reiza Zakia, Nik Mohamed2, Nik Abdullah, Mohd. Nor, Mohd. Jailani
Format: Article
Language:English
Published: Penerbit UTM Press 2006
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Online Access:http://eprints.utm.my/id/eprint/1714/1/JTJun44A%5B08%5D.pdf
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spelling my.utm.17142017-11-01T04:17:30Z http://eprints.utm.my/id/eprint/1714/ The Design And Simulation Of Flow Mode Electrorheological Damper Mukhlis, Reiza Zakia Nik Mohamed2, Nik Abdullah Mohd. Nor, Mohd. Jailani Q Science (General) Electrorheological (ER) Damper Is A Damper That Utilizes Electrorheological Fluid As The Working Fluid. By Changing The Strength Of Applied Electric Field To The Fluid, The Flow Resistance Of The Fluid Changes And Hence The Damping Characteristic Could Be Adjusted. This Paper Provides Theoretical Formulation To Calculate The Damping Constant Of Semi-Active Flow Mode ER Damper. The Formula Is Developed By Analyzing Fluid Velocity Profile That Flows In Electrode Gap. From The Simulation, It Shows That Electric Field Strength Gives Severe Effect To The Damping Level Of The Damper. Without Applying Electric Field, A Reduction On The Gap Of Electrode From 3 To 1 Mm Will Increase The Damping Constant Value By A Factor Of Only 27, While With A 3 Kvmm–1 Electric Field Being Applied, The Increase Is By A Factor Of 595. Penerbit UTM Press 2006-06 Article PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/1714/1/JTJun44A%5B08%5D.pdf Mukhlis, Reiza Zakia and Nik Mohamed2, Nik Abdullah and Mohd. Nor, Mohd. Jailani (2006) The Design And Simulation Of Flow Mode Electrorheological Damper. Jurnal Teknologi (A) , 44 (A). pp. 115-125. ISSN 0127-9696
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/
language English
topic Q Science (General)
spellingShingle Q Science (General)
Mukhlis, Reiza Zakia
Nik Mohamed2, Nik Abdullah
Mohd. Nor, Mohd. Jailani
The Design And Simulation Of Flow Mode Electrorheological Damper
description Electrorheological (ER) Damper Is A Damper That Utilizes Electrorheological Fluid As The Working Fluid. By Changing The Strength Of Applied Electric Field To The Fluid, The Flow Resistance Of The Fluid Changes And Hence The Damping Characteristic Could Be Adjusted. This Paper Provides Theoretical Formulation To Calculate The Damping Constant Of Semi-Active Flow Mode ER Damper. The Formula Is Developed By Analyzing Fluid Velocity Profile That Flows In Electrode Gap. From The Simulation, It Shows That Electric Field Strength Gives Severe Effect To The Damping Level Of The Damper. Without Applying Electric Field, A Reduction On The Gap Of Electrode From 3 To 1 Mm Will Increase The Damping Constant Value By A Factor Of Only 27, While With A 3 Kvmm–1 Electric Field Being Applied, The Increase Is By A Factor Of 595.
format Article
author Mukhlis, Reiza Zakia
Nik Mohamed2, Nik Abdullah
Mohd. Nor, Mohd. Jailani
author_facet Mukhlis, Reiza Zakia
Nik Mohamed2, Nik Abdullah
Mohd. Nor, Mohd. Jailani
author_sort Mukhlis, Reiza Zakia
title The Design And Simulation Of Flow Mode Electrorheological Damper
title_short The Design And Simulation Of Flow Mode Electrorheological Damper
title_full The Design And Simulation Of Flow Mode Electrorheological Damper
title_fullStr The Design And Simulation Of Flow Mode Electrorheological Damper
title_full_unstemmed The Design And Simulation Of Flow Mode Electrorheological Damper
title_sort design and simulation of flow mode electrorheological damper
publisher Penerbit UTM Press
publishDate 2006
url http://eprints.utm.my/id/eprint/1714/1/JTJun44A%5B08%5D.pdf
http://eprints.utm.my/id/eprint/1714/
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score 13.211869