Adherence Evaluation of a MacPherson Suspension under EuSAMA Norm in a Mathematical Model and one Multibody
A computational simulation is Implemented, in order to response to a problem of dynamics associated With The assessment of adherence in suspension systems. The process begins with the lifting of the most representative geometries of a MacPherson system of a Nissan Sentra B13, where each of the devic...
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Format: | Article |
Language: | English |
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Instituto Tecnológico Metropolitano
2013-11-01
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Series: | TecnoLógicas |
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Online Access: | http://itmojs.itm.edu.co/index.php/tecnologicas/article/view/500 |
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author | Juan J. Arbeláez-Toro Carlos M. Rodriguez-Ledesma Diego A. Hincapié-Zuluaga Edward A. Torres-Lopez |
author_facet | Juan J. Arbeláez-Toro Carlos M. Rodriguez-Ledesma Diego A. Hincapié-Zuluaga Edward A. Torres-Lopez |
author_sort | Juan J. Arbeláez-Toro |
collection | DOAJ |
description | A computational simulation is Implemented, in order to response to a problem of dynamics associated With The assessment of adherence in suspension systems. The process begins with the lifting of the most representative geometries of a MacPherson system of a Nissan Sentra B13, where each of the devices is created and assembled into a CAD software to give a dynamic solution on a CAE multibody package. Afterwards a mathematical model was created whose differential equations are generated substantiated on Newton's second law and this are resolved using Matlab-Simulink applications. Once the model developing process is over, the variables are fed with accurate information of the studied vehicle to obtain the graphs that give an answer to EuSAMA (European Shock Absorber Manufacturers Association) test protocol for the adherence analysis. The results presented show the reliability of the developed models when compared with the experimental test; furthermore, it demonstrates that the decrease of the damping coefficient compromises the vehicle´s adherence on the track, affecting its stability and maneuverability. |
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format | Article |
id | doaj.art-54a8827578b947ad83edf00772b2374c |
institution | Directory Open Access Journal |
issn | 0123-7799 2256-5337 |
language | English |
last_indexed | 2024-04-13T07:42:19Z |
publishDate | 2013-11-01 |
publisher | Instituto Tecnológico Metropolitano |
record_format | Article |
series | TecnoLógicas |
spelling | doaj.art-54a8827578b947ad83edf00772b2374c2022-12-22T02:55:50ZengInstituto Tecnológico MetropolitanoTecnoLógicas0123-77992256-53372013-11-0100757768439Adherence Evaluation of a MacPherson Suspension under EuSAMA Norm in a Mathematical Model and one MultibodyJuan J. Arbeláez-Toro0Carlos M. Rodriguez-Ledesma1Diego A. Hincapié-Zuluaga2Edward A. Torres-Lopez3Grupo de Investigación en Materiales Avanzados y Energía, Instituto Tecnológico Metropolitano, MedellínGrupo de Investigación en Materiales Avanzados y Energía, Instituto Tecnológico Metropolitano, MedellínGrupo de Investigación en Materiales Avanzados y Energía, Instituto Tecnológico Metropolitano, MedellínGrupo de Investigación en Materiales Avanzados y Energía, Instituto Tecnológico Metropolitano, MedellínA computational simulation is Implemented, in order to response to a problem of dynamics associated With The assessment of adherence in suspension systems. The process begins with the lifting of the most representative geometries of a MacPherson system of a Nissan Sentra B13, where each of the devices is created and assembled into a CAD software to give a dynamic solution on a CAE multibody package. Afterwards a mathematical model was created whose differential equations are generated substantiated on Newton's second law and this are resolved using Matlab-Simulink applications. Once the model developing process is over, the variables are fed with accurate information of the studied vehicle to obtain the graphs that give an answer to EuSAMA (European Shock Absorber Manufacturers Association) test protocol for the adherence analysis. The results presented show the reliability of the developed models when compared with the experimental test; furthermore, it demonstrates that the decrease of the damping coefficient compromises the vehicle´s adherence on the track, affecting its stability and maneuverability.http://itmojs.itm.edu.co/index.php/tecnologicas/article/view/500Adhesiónmodelo matemáticomodelo multicuerposuspensión MacPhersonEuSAMA. |
spellingShingle | Juan J. Arbeláez-Toro Carlos M. Rodriguez-Ledesma Diego A. Hincapié-Zuluaga Edward A. Torres-Lopez Adherence Evaluation of a MacPherson Suspension under EuSAMA Norm in a Mathematical Model and one Multibody TecnoLógicas Adhesión modelo matemático modelo multicuerpo suspensión MacPherson EuSAMA. |
title | Adherence Evaluation of a MacPherson Suspension under EuSAMA Norm in a Mathematical Model and one Multibody |
title_full | Adherence Evaluation of a MacPherson Suspension under EuSAMA Norm in a Mathematical Model and one Multibody |
title_fullStr | Adherence Evaluation of a MacPherson Suspension under EuSAMA Norm in a Mathematical Model and one Multibody |
title_full_unstemmed | Adherence Evaluation of a MacPherson Suspension under EuSAMA Norm in a Mathematical Model and one Multibody |
title_short | Adherence Evaluation of a MacPherson Suspension under EuSAMA Norm in a Mathematical Model and one Multibody |
title_sort | adherence evaluation of a macpherson suspension under eusama norm in a mathematical model and one multibody |
topic | Adhesión modelo matemático modelo multicuerpo suspensión MacPherson EuSAMA. |
url | http://itmojs.itm.edu.co/index.php/tecnologicas/article/view/500 |
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