Transient and thermal contact analysis for the elastic behavior of functionally graded brake disks due to mechanical and thermal loads

In this paper, the transient and contact analysis of functionally graded (FG) brake disk is presented. The analysis was carried out using ANSYS parametric design language (APDL). The FG brake disk is made of metal–ceramic material. The material properties vary in radial direction with the values fro...

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Main Authors: M. M., Shahzamanian, Sahari, Barkawi, Bayat, Mehdi, Zahari, Nur Ismarrubie, Mustapha, Faizal
Format: Article
Language:English
English
Published: Elsevier 2010
Online Access:http://psasir.upm.edu.my/id/eprint/9470/1/Transient%20and%20thermal%20contact%20analysis%20for%20the%20elastic%20behavior%20of%20functionally%20graded%20brake%20disks%20due%20to%20mechanical%20and%20thermal%20loads.pdf
http://psasir.upm.edu.my/id/eprint/9470/
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spelling my.upm.eprints.94702015-10-20T07:26:29Z http://psasir.upm.edu.my/id/eprint/9470/ Transient and thermal contact analysis for the elastic behavior of functionally graded brake disks due to mechanical and thermal loads M. M., Shahzamanian Sahari, Barkawi Bayat, Mehdi Zahari, Nur Ismarrubie Mustapha, Faizal In this paper, the transient and contact analysis of functionally graded (FG) brake disk is presented. The analysis was carried out using ANSYS parametric design language (APDL). The FG brake disk is made of metal–ceramic material. The material properties vary in radial direction with the values from full-metal at the inner radius to that of full-ceramic at the outer radius. In the analysis, FG brake disk is in contact with one pure pad disk and coulomb contact friction is considered as heat source. The non-dimensional results are obtained for specific value of grading index (n = 1) by considering different material property divisions of 25, 50, 100 and 200. The results presented are for the pressure distribution, total stress, pad penetration, friction stress, heat flux and temperature during contact, for different values of contact stiffness factor, Fkn, which depends on the property gradation of FG brake disk with 200 material property divisions. The results show that the contact pressure and contact total stress increase with increasing values of Fkn, and hence it can be concluded that gradation of the metal–ceramic has significant effect in the thermomechanical response of FG brake disks. Elsevier 2010-12 Article PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/9470/1/Transient%20and%20thermal%20contact%20analysis%20for%20the%20elastic%20behavior%20of%20functionally%20graded%20brake%20disks%20due%20to%20mechanical%20and%20thermal%20loads.pdf M. M., Shahzamanian and Sahari, Barkawi and Bayat, Mehdi and Zahari, Nur Ismarrubie and Mustapha, Faizal (2010) Transient and thermal contact analysis for the elastic behavior of functionally graded brake disks due to mechanical and thermal loads. Materials and Design, 31 (10). pp. 4655-4665. ISSN 0264-1275 10.1016/j.matdes.2010.05.032 English
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
language English
English
description In this paper, the transient and contact analysis of functionally graded (FG) brake disk is presented. The analysis was carried out using ANSYS parametric design language (APDL). The FG brake disk is made of metal–ceramic material. The material properties vary in radial direction with the values from full-metal at the inner radius to that of full-ceramic at the outer radius. In the analysis, FG brake disk is in contact with one pure pad disk and coulomb contact friction is considered as heat source. The non-dimensional results are obtained for specific value of grading index (n = 1) by considering different material property divisions of 25, 50, 100 and 200. The results presented are for the pressure distribution, total stress, pad penetration, friction stress, heat flux and temperature during contact, for different values of contact stiffness factor, Fkn, which depends on the property gradation of FG brake disk with 200 material property divisions. The results show that the contact pressure and contact total stress increase with increasing values of Fkn, and hence it can be concluded that gradation of the metal–ceramic has significant effect in the thermomechanical response of FG brake disks.
format Article
author M. M., Shahzamanian
Sahari, Barkawi
Bayat, Mehdi
Zahari, Nur Ismarrubie
Mustapha, Faizal
spellingShingle M. M., Shahzamanian
Sahari, Barkawi
Bayat, Mehdi
Zahari, Nur Ismarrubie
Mustapha, Faizal
Transient and thermal contact analysis for the elastic behavior of functionally graded brake disks due to mechanical and thermal loads
author_facet M. M., Shahzamanian
Sahari, Barkawi
Bayat, Mehdi
Zahari, Nur Ismarrubie
Mustapha, Faizal
author_sort M. M., Shahzamanian
title Transient and thermal contact analysis for the elastic behavior of functionally graded brake disks due to mechanical and thermal loads
title_short Transient and thermal contact analysis for the elastic behavior of functionally graded brake disks due to mechanical and thermal loads
title_full Transient and thermal contact analysis for the elastic behavior of functionally graded brake disks due to mechanical and thermal loads
title_fullStr Transient and thermal contact analysis for the elastic behavior of functionally graded brake disks due to mechanical and thermal loads
title_full_unstemmed Transient and thermal contact analysis for the elastic behavior of functionally graded brake disks due to mechanical and thermal loads
title_sort transient and thermal contact analysis for the elastic behavior of functionally graded brake disks due to mechanical and thermal loads
publisher Elsevier
publishDate 2010
url http://psasir.upm.edu.my/id/eprint/9470/1/Transient%20and%20thermal%20contact%20analysis%20for%20the%20elastic%20behavior%20of%20functionally%20graded%20brake%20disks%20due%20to%20mechanical%20and%20thermal%20loads.pdf
http://psasir.upm.edu.my/id/eprint/9470/
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