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 in | IOP conference series. Materials Science and Engineering Vol. 310; no. 1; pp. 12128 - 12138 |
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Main Authors | , |
Format | Journal Article |
Language | English |
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. |
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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. |
Author_xml | – sequence: 1 givenname: R surname: Krishnan Unni fullname: Krishnan Unni, R email: ravikumarankrishnanunni@gmail.com organization: Department of Mechanical Engineering, Amrita School Of Engineering Graduate, , India – sequence: 2 givenname: N. surname: Tamilarasan fullname: Tamilarasan, N. email: n_tamilarasan@cb.amrita.edu organization: Department of Mechanical Engineering, Amrita School Of Engineering Professor, , India |
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References | 11 Tamilarasan N (10) 2016 Hadadian Armin (6) 2012 Khedkar Y.M. (15) 2014 Poornamohan Pinjarla (12) 2012 Ashwani K (16) 2012; 2 1 Audi TT Coupé ’07 - Suspension System (14) 2006; 381 3 4 5 7 9 Zheng L. (8) 2009 Wang J. (13) 2001 Wang J. (2) 2001 |
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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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