Application of Finite Element Analysis For Prediction of Disc Brake Squeal
Automotive disc brake squeal has been a major concern in warranty issues and a challenging problem for many years to automotive industry. In order to tackle this problem, a variety of tools have been developed which include both experimental studies and numerical modeling technique. This paper inve...
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2011
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my.utem.eprints.61782015-05-28T03:40:45Z http://eprints.utem.edu.my/id/eprint/6178/ Application of Finite Element Analysis For Prediction of Disc Brake Squeal Hassan, Muhammad Zahir Mohd Irwan, Mohd Azmi Abdul Munir, Fudhail QA76 Computer software Automotive disc brake squeal has been a major concern in warranty issues and a challenging problem for many years to automotive industry. In order to tackle this problem, a variety of tools have been developed which include both experimental studies and numerical modeling technique. This paper investigated the brake squeal by using Finite Element Analysis (FEA). Using modal analysis, the dynamic deflection pattern of the disc brake is resolved into a set of simple mode shapes each having a unique natural frequency. In the numerical free-free modal analysis, mesh density and material properties of the components are adjusted to obtain similar natural frequencies to those measured experimentally. The outcomes of the FEA are presented in terms of the extracted natural frequencies and the associated mode shapes. This approach is therefore can be used as a predictive tools to evaluate disc brake squeal for automotive applications. World Academic Union (World Academic Press) 2011-04-25 Book Section PeerReviewed application/pdf en http://eprints.utem.edu.my/id/eprint/6178/1/ICMS_Zahir.pdf Hassan, Muhammad Zahir and Mohd Irwan, Mohd Azmi and Abdul Munir, Fudhail (2011) Application of Finite Element Analysis For Prediction of Disc Brake Squeal. In: Proceeding of The Fourth International Conference on Modelling and Simulation (ICMS2011). Modelling and Simulation, 2 . World Academic Union (World Academic Press), United Kingdom, pp. 74-77. ISBN 978-1-84626-070-4 http://www.worldacademicunion.com/ |
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QA76 Computer software Hassan, Muhammad Zahir Mohd Irwan, Mohd Azmi Abdul Munir, Fudhail Application of Finite Element Analysis For Prediction of Disc Brake Squeal |
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Automotive disc brake squeal has been a major concern in warranty issues and a challenging problem for many years to automotive industry. In order to tackle this problem, a variety of tools have been developed which include both experimental studies and numerical modeling technique. This paper investigated the brake squeal by using Finite Element Analysis (FEA). Using modal analysis, the dynamic deflection pattern of the disc brake is resolved into a set of simple mode shapes each having a unique natural frequency. In the numerical free-free modal analysis, mesh density and material properties of the components are adjusted to obtain similar natural frequencies to those measured experimentally. The outcomes of the FEA are presented in terms of the extracted natural frequencies and the associated mode shapes. This approach is therefore can be used as a predictive tools to evaluate disc brake squeal for automotive applications. |
format |
Book Section |
author |
Hassan, Muhammad Zahir Mohd Irwan, Mohd Azmi Abdul Munir, Fudhail |
author_facet |
Hassan, Muhammad Zahir Mohd Irwan, Mohd Azmi Abdul Munir, Fudhail |
author_sort |
Hassan, Muhammad Zahir |
title |
Application of Finite Element Analysis For Prediction of Disc Brake Squeal |
title_short |
Application of Finite Element Analysis For Prediction of Disc Brake Squeal |
title_full |
Application of Finite Element Analysis For Prediction of Disc Brake Squeal |
title_fullStr |
Application of Finite Element Analysis For Prediction of Disc Brake Squeal |
title_full_unstemmed |
Application of Finite Element Analysis For Prediction of Disc Brake Squeal |
title_sort |
application of finite element analysis for prediction of disc brake squeal |
publisher |
World Academic Union (World Academic Press) |
publishDate |
2011 |
url |
http://eprints.utem.edu.my/id/eprint/6178/1/ICMS_Zahir.pdf http://eprints.utem.edu.my/id/eprint/6178/ http://www.worldacademicunion.com/ |
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