Materials selection analysis for vibration isolator pads

Isolator pads which also called as vibration pads are used in many applications to isolate vibration, extend machine life, reduce maintenance costs and reduce excessive wear. It is the process of isolating objects such as equipment from harmful vibration sources. In this study, two types of isolator...

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Main Authors: Zaman, Izzuddin, Subramaniyan, S Kanna, Sanusi, Shahmir Hayyan, Azmir, Nor Azali, Manshoor, Bukhari, Khalid, Amir
Format: Article
Language:English
Published: FAZ Publishing 2020
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Online Access:http://eprints.uthm.edu.my/6390/1/AJ%202020%20%28835%29.pdf
http://eprints.uthm.edu.my/6390/
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spelling my.uthm.eprints.63902022-01-30T08:29:35Z http://eprints.uthm.edu.my/6390/ Materials selection analysis for vibration isolator pads Zaman, Izzuddin Subramaniyan, S Kanna Sanusi, Shahmir Hayyan Azmir, Nor Azali Manshoor, Bukhari Khalid, Amir TJ210.2-211.47 Mechanical devices and figures. Automata. Ingenious mechanisms. Robots (General) TJ227-240 Machine design and drawing Isolator pads which also called as vibration pads are used in many applications to isolate vibration, extend machine life, reduce maintenance costs and reduce excessive wear. It is the process of isolating objects such as equipment from harmful vibration sources. In this study, two types of isolator pad materials; neoprene and sorbothone were analyzed in order to be used for stackable washing and dryer machine. In this case, the stackable washing and dryer machine together with the isolator pads were simplified into two degree of freedom system, where the first and the second natural frequencies for each material of isolator pad were determined by using matrix iteration method, in which later were validated by a modern tool such as Matlab. For neoprene material, the first natural frequency obtained was 44.2 rad/s and the second natural frequency is 107.7 rad/s. By contrast, sorbothone material shows slightly higher for both first and second natural frequencies compared to neoprene, which were 57.9 rad/s and 141.0 rad/s respectively. From this result, it shows that neoprene is suitable to be used as the coupling (spring) material since it has lower natural frequency value compared to sorbothone, besides the second natural frequency of sorbothone material is near to the forcing frequency 140 rad/s, thus could amplified the vibration due to resonance. FAZ Publishing 2020 Article PeerReviewed text en http://eprints.uthm.edu.my/6390/1/AJ%202020%20%28835%29.pdf Zaman, Izzuddin and Subramaniyan, S Kanna and Sanusi, Shahmir Hayyan and Azmir, Nor Azali and Manshoor, Bukhari and Khalid, Amir (2020) Materials selection analysis for vibration isolator pads. Advanced Research in Natural Fibers, 2 (1). pp. 15-20. ISSN 2682-7409
institution Universiti Tun Hussein Onn Malaysia
building UTHM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tun Hussein Onn Malaysia
content_source UTHM Institutional Repository
url_provider http://eprints.uthm.edu.my/
language English
topic TJ210.2-211.47 Mechanical devices and figures. Automata. Ingenious mechanisms. Robots (General)
TJ227-240 Machine design and drawing
spellingShingle TJ210.2-211.47 Mechanical devices and figures. Automata. Ingenious mechanisms. Robots (General)
TJ227-240 Machine design and drawing
Zaman, Izzuddin
Subramaniyan, S Kanna
Sanusi, Shahmir Hayyan
Azmir, Nor Azali
Manshoor, Bukhari
Khalid, Amir
Materials selection analysis for vibration isolator pads
description Isolator pads which also called as vibration pads are used in many applications to isolate vibration, extend machine life, reduce maintenance costs and reduce excessive wear. It is the process of isolating objects such as equipment from harmful vibration sources. In this study, two types of isolator pad materials; neoprene and sorbothone were analyzed in order to be used for stackable washing and dryer machine. In this case, the stackable washing and dryer machine together with the isolator pads were simplified into two degree of freedom system, where the first and the second natural frequencies for each material of isolator pad were determined by using matrix iteration method, in which later were validated by a modern tool such as Matlab. For neoprene material, the first natural frequency obtained was 44.2 rad/s and the second natural frequency is 107.7 rad/s. By contrast, sorbothone material shows slightly higher for both first and second natural frequencies compared to neoprene, which were 57.9 rad/s and 141.0 rad/s respectively. From this result, it shows that neoprene is suitable to be used as the coupling (spring) material since it has lower natural frequency value compared to sorbothone, besides the second natural frequency of sorbothone material is near to the forcing frequency 140 rad/s, thus could amplified the vibration due to resonance.
format Article
author Zaman, Izzuddin
Subramaniyan, S Kanna
Sanusi, Shahmir Hayyan
Azmir, Nor Azali
Manshoor, Bukhari
Khalid, Amir
author_facet Zaman, Izzuddin
Subramaniyan, S Kanna
Sanusi, Shahmir Hayyan
Azmir, Nor Azali
Manshoor, Bukhari
Khalid, Amir
author_sort Zaman, Izzuddin
title Materials selection analysis for vibration isolator pads
title_short Materials selection analysis for vibration isolator pads
title_full Materials selection analysis for vibration isolator pads
title_fullStr Materials selection analysis for vibration isolator pads
title_full_unstemmed Materials selection analysis for vibration isolator pads
title_sort materials selection analysis for vibration isolator pads
publisher FAZ Publishing
publishDate 2020
url http://eprints.uthm.edu.my/6390/1/AJ%202020%20%28835%29.pdf
http://eprints.uthm.edu.my/6390/
_version_ 1738581487019622400
score 13.18916