Evaluation of Rayleigh damping coefficients for laminated rubber bearing components using finite element and experimental modal analysis

Laminated rubber bearing is a significant device found in structures such as bridges and buildings. It is used to isolate the foundation and the superstructure from seismic loads. Since it is made up from a combination of rubbers and steel plates in alternate layers which make the laminated rubber b...

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Published in:International Journal of Integrated Engineering
Main Author: Yusuf A.I.; Amin N.M.; Yunus M.A.; Rani M.N.A.
Format: Article
Language:English
Published: Penerbit UTHM 2018
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85059520790&doi=10.30880%2fijie.2018.10.09.004&partnerID=40&md5=daad39c2ce6334255647090209c38091
id 2-s2.0-85059520790
spelling 2-s2.0-85059520790
Yusuf A.I.; Amin N.M.; Yunus M.A.; Rani M.N.A.
Evaluation of Rayleigh damping coefficients for laminated rubber bearing components using finite element and experimental modal analysis
2018
International Journal of Integrated Engineering
10
9
10.30880/ijie.2018.10.09.004
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85059520790&doi=10.30880%2fijie.2018.10.09.004&partnerID=40&md5=daad39c2ce6334255647090209c38091
Laminated rubber bearing is a significant device found in structures such as bridges and buildings. It is used to isolate the foundation and the superstructure from seismic loads. Since it is made up from a combination of rubbers and steel plates in alternate layers which make the laminated rubber bearing a complex material, the measurements of damping of the laminated rubber bearing is difficult in practice. Damping is a dissipation of energy or energy losses in the vibration of the structure when the structures are excited with external dynamic loading. An accurate value of damping is very important as damping plays a crucial role in fixing the borderline between stability and instability in many structural systems. Therefore, it is essential to determine the accurate value of damping in structural analysis. Finite element and experimental modal analysis is one of the methods that can be used to determine dynamic properties including damping in any structures. Hence, the main objectives of this research are to determine the natural frequencies, mode shapes, Rayleigh's damping coefficients, α and β and to evaluate the performance of the laminated rubber bearing components i.e. steel and rubber plates using finite element and experimental modal analysis. Based on the finding, the finite element modal analysis with the added Rayleigh's damping coefficients α and β shows a good agreement with the experimental modal analysis in term of natural frequencies and mode shapes. The value of natural frequencies reduces after the Rayleigh's damping coefficients are added into the finite element modal analysis and the minimum and maximum displacement are found to be unaffected by the Rayleigh's damping coefficients for rubber plate. It can be concluded that modal analysis method can be used to estimate the accurate values of damping ratio and to determine the Rayleigh's damping coefficients α and β as well. © 2018, Penerbit UTHM.
Penerbit UTHM
2229838X
English
Article
All Open Access; Green Open Access
author Yusuf A.I.; Amin N.M.; Yunus M.A.; Rani M.N.A.
spellingShingle Yusuf A.I.; Amin N.M.; Yunus M.A.; Rani M.N.A.
Evaluation of Rayleigh damping coefficients for laminated rubber bearing components using finite element and experimental modal analysis
author_facet Yusuf A.I.; Amin N.M.; Yunus M.A.; Rani M.N.A.
author_sort Yusuf A.I.; Amin N.M.; Yunus M.A.; Rani M.N.A.
title Evaluation of Rayleigh damping coefficients for laminated rubber bearing components using finite element and experimental modal analysis
title_short Evaluation of Rayleigh damping coefficients for laminated rubber bearing components using finite element and experimental modal analysis
title_full Evaluation of Rayleigh damping coefficients for laminated rubber bearing components using finite element and experimental modal analysis
title_fullStr Evaluation of Rayleigh damping coefficients for laminated rubber bearing components using finite element and experimental modal analysis
title_full_unstemmed Evaluation of Rayleigh damping coefficients for laminated rubber bearing components using finite element and experimental modal analysis
title_sort Evaluation of Rayleigh damping coefficients for laminated rubber bearing components using finite element and experimental modal analysis
publishDate 2018
container_title International Journal of Integrated Engineering
container_volume 10
container_issue 9
doi_str_mv 10.30880/ijie.2018.10.09.004
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85059520790&doi=10.30880%2fijie.2018.10.09.004&partnerID=40&md5=daad39c2ce6334255647090209c38091
description Laminated rubber bearing is a significant device found in structures such as bridges and buildings. It is used to isolate the foundation and the superstructure from seismic loads. Since it is made up from a combination of rubbers and steel plates in alternate layers which make the laminated rubber bearing a complex material, the measurements of damping of the laminated rubber bearing is difficult in practice. Damping is a dissipation of energy or energy losses in the vibration of the structure when the structures are excited with external dynamic loading. An accurate value of damping is very important as damping plays a crucial role in fixing the borderline between stability and instability in many structural systems. Therefore, it is essential to determine the accurate value of damping in structural analysis. Finite element and experimental modal analysis is one of the methods that can be used to determine dynamic properties including damping in any structures. Hence, the main objectives of this research are to determine the natural frequencies, mode shapes, Rayleigh's damping coefficients, α and β and to evaluate the performance of the laminated rubber bearing components i.e. steel and rubber plates using finite element and experimental modal analysis. Based on the finding, the finite element modal analysis with the added Rayleigh's damping coefficients α and β shows a good agreement with the experimental modal analysis in term of natural frequencies and mode shapes. The value of natural frequencies reduces after the Rayleigh's damping coefficients are added into the finite element modal analysis and the minimum and maximum displacement are found to be unaffected by the Rayleigh's damping coefficients for rubber plate. It can be concluded that modal analysis method can be used to estimate the accurate values of damping ratio and to determine the Rayleigh's damping coefficients α and β as well. © 2018, Penerbit UTHM.
publisher Penerbit UTHM
issn 2229838X
language English
format Article
accesstype All Open Access; Green Open Access
record_format scopus
collection Scopus
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