Design, Manufacturing and Vibration Respond Measurements of Shaft Misalignment Test Rig

A rotating machinery problem will generate vibration. Excessive vibration level on rotating machinery will cause its component to fail prematurely. This condition may affect rotating machinery activity and can shorten its lifetime. Source of the excessive vibration level on the rotating machinery...

Full description

Saved in:
Bibliographic Details
Main Author: Manurung, Heber
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/37512
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:37512
spelling id-itb.:375122019-04-01T08:41:04ZDesign, Manufacturing and Vibration Respond Measurements of Shaft Misalignment Test Rig Manurung, Heber Indonesia Final Project Vibration Respond, Shaft Misalignment Test Rig INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/37512 A rotating machinery problem will generate vibration. Excessive vibration level on rotating machinery will cause its component to fail prematurely. This condition may affect rotating machinery activity and can shorten its lifetime. Source of the excessive vibration level on the rotating machinery may be originated by shaft misalignment phenomenon. Therefore, design, manufacturing and vibration response measurements of a shaft misalignment test set up is intended to facilitate vibration signatures evaluation of defective shaft misalignment research. The aim of this research is to develop a shaft misalignment test rig which has facilities to show parallel misalignment (horizontal and vertical) and angular misalignment (horizontal and vertical) that is used to predict misalignment vibration signature. This measuring set up is an improvement of the existing similar set up which is already available at the Lab. Design evaluations are carried out by using static and normal mode analysis modules available in MSC Nastran for windows V4.5 software. Experimental evaluations are related to FRF, spectral map and vibration response due to shaft misaligned condition introduced to the measuring set up.???? The FRF measurement result shows that the first natural frequency of the new shaft misalignment test rig (111.5 Hz) has higher value compared to its operating frequency (0-50 Hz). The result of the spectral map and vibration response due to misalignment measurement are able to indicate vibration signature which normally occurred on shaft misalignment case. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description A rotating machinery problem will generate vibration. Excessive vibration level on rotating machinery will cause its component to fail prematurely. This condition may affect rotating machinery activity and can shorten its lifetime. Source of the excessive vibration level on the rotating machinery may be originated by shaft misalignment phenomenon. Therefore, design, manufacturing and vibration response measurements of a shaft misalignment test set up is intended to facilitate vibration signatures evaluation of defective shaft misalignment research. The aim of this research is to develop a shaft misalignment test rig which has facilities to show parallel misalignment (horizontal and vertical) and angular misalignment (horizontal and vertical) that is used to predict misalignment vibration signature. This measuring set up is an improvement of the existing similar set up which is already available at the Lab. Design evaluations are carried out by using static and normal mode analysis modules available in MSC Nastran for windows V4.5 software. Experimental evaluations are related to FRF, spectral map and vibration response due to shaft misaligned condition introduced to the measuring set up.???? The FRF measurement result shows that the first natural frequency of the new shaft misalignment test rig (111.5 Hz) has higher value compared to its operating frequency (0-50 Hz). The result of the spectral map and vibration response due to misalignment measurement are able to indicate vibration signature which normally occurred on shaft misalignment case.
format Final Project
author Manurung, Heber
spellingShingle Manurung, Heber
Design, Manufacturing and Vibration Respond Measurements of Shaft Misalignment Test Rig
author_facet Manurung, Heber
author_sort Manurung, Heber
title Design, Manufacturing and Vibration Respond Measurements of Shaft Misalignment Test Rig
title_short Design, Manufacturing and Vibration Respond Measurements of Shaft Misalignment Test Rig
title_full Design, Manufacturing and Vibration Respond Measurements of Shaft Misalignment Test Rig
title_fullStr Design, Manufacturing and Vibration Respond Measurements of Shaft Misalignment Test Rig
title_full_unstemmed Design, Manufacturing and Vibration Respond Measurements of Shaft Misalignment Test Rig
title_sort design, manufacturing and vibration respond measurements of shaft misalignment test rig
url https://digilib.itb.ac.id/gdl/view/37512
_version_ 1822924896587481088