Vibration reduction of mechanical structure using tuned mass damper / Ahmad Alif Qayyum Azhar

The final year project is about a study of the project student work on the tuned mass damper used in the mechanical structure to reduce the vibration. The project will create several design processes and create objectively based structures to obtain the results of this concept in the mechanical fiel...

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Main Author: Azhar, Ahmad Alif Qayyum
Format: Student Project
Language:English
Published: 2022
Subjects:
Online Access:https://ir.uitm.edu.my/id/eprint/71027/1/71027.pdf
https://ir.uitm.edu.my/id/eprint/71027/
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Institution: Universiti Teknologi Mara
Language: English
id my.uitm.ir.71027
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spelling my.uitm.ir.710272023-01-10T04:00:59Z https://ir.uitm.edu.my/id/eprint/71027/ Vibration reduction of mechanical structure using tuned mass damper / Ahmad Alif Qayyum Azhar Azhar, Ahmad Alif Qayyum Engineering instruments, meters, etc. Industrial instrumentation Systems engineering Environmental engineering Engineering design Electronic data processing. Computer-aided engineering Impact strength Dynamic loading conditions. Structural dynamics. Vibrations Structural design Specific structural forms, analysis, and design The final year project is about a study of the project student work on the tuned mass damper used in the mechanical structure to reduce the vibration. The project will create several design processes and create objectively based structures to obtain the results of this concept in the mechanical field. This project will also show some examples of how it works when high vibration is applied that will be tested in terms of vibration and durability. The goal of this research is to reduce vibration in specific cases where the vibration is quite high in the structure. The problem is to choose the type of tuned mass damper mechanism and sketch the best design for each structure that is subjected to heavy vibration. It is important to decide on a suitable design and build a solid design in order to solve the problem in vibrations. This project objective is to design a damping mechanism and to fabricate and test the performance. For the scope of work, this project limited to design, fabrication, and testing only. The project will be conducted for semesters 4 and 5 to finish the project. The time is taken for the vibration slow until its stop is around 20 seconds. The durability will be tested after making the project and the size will be constructed for 1meter length x 1-meter width x 1meter height for the tuned mass damper and building structure for this project product. 2022 Student Project NonPeerReviewed text en https://ir.uitm.edu.my/id/eprint/71027/1/71027.pdf Vibration reduction of mechanical structure using tuned mass damper / Ahmad Alif Qayyum Azhar. (2022) [Student Project] <http://terminalib.uitm.edu.my/71027.pdf> (Submitted)
institution Universiti Teknologi Mara
building Tun Abdul Razak Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Mara
content_source UiTM Institutional Repository
url_provider http://ir.uitm.edu.my/
language English
topic Engineering instruments, meters, etc. Industrial instrumentation
Systems engineering
Environmental engineering
Engineering design
Electronic data processing. Computer-aided engineering
Impact strength
Dynamic loading conditions. Structural dynamics. Vibrations
Structural design
Specific structural forms, analysis, and design
spellingShingle Engineering instruments, meters, etc. Industrial instrumentation
Systems engineering
Environmental engineering
Engineering design
Electronic data processing. Computer-aided engineering
Impact strength
Dynamic loading conditions. Structural dynamics. Vibrations
Structural design
Specific structural forms, analysis, and design
Azhar, Ahmad Alif Qayyum
Vibration reduction of mechanical structure using tuned mass damper / Ahmad Alif Qayyum Azhar
description The final year project is about a study of the project student work on the tuned mass damper used in the mechanical structure to reduce the vibration. The project will create several design processes and create objectively based structures to obtain the results of this concept in the mechanical field. This project will also show some examples of how it works when high vibration is applied that will be tested in terms of vibration and durability. The goal of this research is to reduce vibration in specific cases where the vibration is quite high in the structure. The problem is to choose the type of tuned mass damper mechanism and sketch the best design for each structure that is subjected to heavy vibration. It is important to decide on a suitable design and build a solid design in order to solve the problem in vibrations. This project objective is to design a damping mechanism and to fabricate and test the performance. For the scope of work, this project limited to design, fabrication, and testing only. The project will be conducted for semesters 4 and 5 to finish the project. The time is taken for the vibration slow until its stop is around 20 seconds. The durability will be tested after making the project and the size will be constructed for 1meter length x 1-meter width x 1meter height for the tuned mass damper and building structure for this project product.
format Student Project
author Azhar, Ahmad Alif Qayyum
author_facet Azhar, Ahmad Alif Qayyum
author_sort Azhar, Ahmad Alif Qayyum
title Vibration reduction of mechanical structure using tuned mass damper / Ahmad Alif Qayyum Azhar
title_short Vibration reduction of mechanical structure using tuned mass damper / Ahmad Alif Qayyum Azhar
title_full Vibration reduction of mechanical structure using tuned mass damper / Ahmad Alif Qayyum Azhar
title_fullStr Vibration reduction of mechanical structure using tuned mass damper / Ahmad Alif Qayyum Azhar
title_full_unstemmed Vibration reduction of mechanical structure using tuned mass damper / Ahmad Alif Qayyum Azhar
title_sort vibration reduction of mechanical structure using tuned mass damper / ahmad alif qayyum azhar
publishDate 2022
url https://ir.uitm.edu.my/id/eprint/71027/1/71027.pdf
https://ir.uitm.edu.my/id/eprint/71027/
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