Design and analysis of a magneto-rheological damper for an all terrain vehicle

A shock absorber design intended to replace the existing conventional shock absorber with a controllable system using a Magneto-rheological damper is introduced for an All Terrain Vehicle (ATV) that was designed for Baja SAE competitions. Suspensions are a vital part of an All Terrain Vehicles as it...

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Published inIOP conference series. Materials Science and Engineering Vol. 310; no. 1; pp. 12128 - 12138
Main Authors Krishnan Unni, R, Tamilarasan, N.
Format Journal Article
LanguageEnglish
Published Bristol IOP Publishing 01.02.2018
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Abstract A shock absorber design intended to replace the existing conventional shock absorber with a controllable system using a Magneto-rheological damper is introduced for an All Terrain Vehicle (ATV) that was designed for Baja SAE competitions. Suspensions are a vital part of an All Terrain Vehicles as it endures various surfaces and requires utmost attention while designing. COMSOL multi-physics software is used for applications that have coupled physics problems and is a unique tool that is used for the designing and analysis phase of the Magneto-rheological damper for the considered application and the model is optimized based on Taguchi using DOE software. The magneto-rheological damper is designed to maximize the damping force with the measured geometric constraints for the All Terrain Vehicle.
AbstractList A shock absorber design intended to replace the existing conventional shock absorber with a controllable system using a Magneto-rheological damper is introduced for an All Terrain Vehicle (ATV) that was designed for Baja SAE competitions. Suspensions are a vital part of an All Terrain Vehicles as it endures various surfaces and requires utmost attention while designing. COMSOL multi-physics software is used for applications that have coupled physics problems and is a unique tool that is used for the designing and analysis phase of the Magneto-rheological damper for the considered application and the model is optimized based on Taguchi using DOE software. The magneto-rheological damper is designed to maximize the damping force with the measured geometric constraints for the All Terrain Vehicle.
Author Krishnan Unni, R
Tamilarasan, N.
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Cites_doi 10.1155/2014/915694
10.1504/IJMMM.2015.073725
10.1177/1045389X12445629
10.1186/s40712-015-0031-1
10.1631/jzus.2003.0514
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Tamilarasan N (10) 2016
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Khedkar Y.M. (15) 2014
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Ashwani K (16) 2012; 2
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  publication-title: International Journal of Research in Engineering and Technology
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  publication-title: Proceedings of the RAHA 2016 International Conference
– year: 2009
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  publication-title: Electromagnetic design of an innovative magneto-rheological damper for all terrain vehicle
– year: 2001
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  start-page: 57
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  publication-title: International Journal of Mechanical Engineering Research
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  publication-title: COMSOL Conference
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SubjectTerms All Terrain Vehicle (ATV)
All terrain vehicles
Applications programs
COMSOL
Damping
damping force
Design
Geometric constraints
Magneto-rheological damper
Rheological properties
Rheology
Shock absorbers
Smart-materials
Software
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Title Design and analysis of a magneto-rheological damper for an all terrain vehicle
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