Study on electrical discharge machining (EDM) in motor bearings

With the significantly improved characteristics and declining prices of power electronics equipment e.g., PWM variable frequency drive (VFD) have dramatically increased the use of electric propulsion in ships since the 1980s. Despite their excellent characteristics, PWM...

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Main Author: Lam, Jin Seng
Other Authors: See Kye Yak
Format: Final Year Project
Language:English
Published: 2017
Subjects:
Online Access:http://hdl.handle.net/10356/71835
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-718352023-07-07T18:00:50Z Study on electrical discharge machining (EDM) in motor bearings Lam, Jin Seng See Kye Yak School of Electrical and Electronic Engineering Rolls-Royce@NTU Corporate Lab DRNTU::Engineering::Electrical and electronic engineering With the significantly improved characteristics and declining prices of power electronics equipment e.g., PWM variable frequency drive (VFD) have dramatically increased the use of electric propulsion in ships since the 1980s. Despite their excellent characteristics, PWM produce time-varying common-mode voltage (CMV), which, via different mechanism, can lead to motor bearing pitting, fluting, and premature failure. Consequently, new drive installations can fail within months resulting in unplanned and costly system downtime. This research was put to the test with high gain and switching frequency for industrial grade motor bearing. Providing an understanding to how bearing damage occur. More will be shown on the relationship between bearing discharge and external applied shaft voltage together with the dynamic impedance of the motor showing the different methods of measurement to be used. The project will focus more on Electrical Machining Discharge (EDM). Where a test rig is fitted with a VACON NXP series inverter is set up to provide a practical understanding towards what is the cause of bearing failure in modern AC drive system today. High gain and switching frequency will be subjected on the test rig with an external bearing set up to study the motor bearing under such conditions. The second portion will be used to understand the cable impedance using a bode100 measuring device. Bachelor of Engineering 2017-05-19T05:50:06Z 2017-05-19T05:50:06Z 2017 Final Year Project (FYP) http://hdl.handle.net/10356/71835 en Nanyang Technological University 73 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Electrical and electronic engineering
spellingShingle DRNTU::Engineering::Electrical and electronic engineering
Lam, Jin Seng
Study on electrical discharge machining (EDM) in motor bearings
description With the significantly improved characteristics and declining prices of power electronics equipment e.g., PWM variable frequency drive (VFD) have dramatically increased the use of electric propulsion in ships since the 1980s. Despite their excellent characteristics, PWM produce time-varying common-mode voltage (CMV), which, via different mechanism, can lead to motor bearing pitting, fluting, and premature failure. Consequently, new drive installations can fail within months resulting in unplanned and costly system downtime. This research was put to the test with high gain and switching frequency for industrial grade motor bearing. Providing an understanding to how bearing damage occur. More will be shown on the relationship between bearing discharge and external applied shaft voltage together with the dynamic impedance of the motor showing the different methods of measurement to be used. The project will focus more on Electrical Machining Discharge (EDM). Where a test rig is fitted with a VACON NXP series inverter is set up to provide a practical understanding towards what is the cause of bearing failure in modern AC drive system today. High gain and switching frequency will be subjected on the test rig with an external bearing set up to study the motor bearing under such conditions. The second portion will be used to understand the cable impedance using a bode100 measuring device.
author2 See Kye Yak
author_facet See Kye Yak
Lam, Jin Seng
format Final Year Project
author Lam, Jin Seng
author_sort Lam, Jin Seng
title Study on electrical discharge machining (EDM) in motor bearings
title_short Study on electrical discharge machining (EDM) in motor bearings
title_full Study on electrical discharge machining (EDM) in motor bearings
title_fullStr Study on electrical discharge machining (EDM) in motor bearings
title_full_unstemmed Study on electrical discharge machining (EDM) in motor bearings
title_sort study on electrical discharge machining (edm) in motor bearings
publishDate 2017
url http://hdl.handle.net/10356/71835
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