A study of hardcoat anodizing on PM Al-Mg composite

This research is being conducted to investigate an effect occurring on anodizing process on powder metallurgy Aluminium-Magnesium (PM Al-Mg) composite. Composite materials are fabricated by using powder metallurgy method which is consist of mixing, compaction, and sintering. After fabrication, comp...

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Main Author: Mohd Nasuha Ab. Halim
Other Authors: Nazree Derman, Dr. (Advisor)
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Language:English
Published: University Malaysia Perlis 2009
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Online Access:http://dspace.unimap.edu.my/xmlui/handle/123456789/4847
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spelling my.unimap-48472009-03-02T02:50:51Z A study of hardcoat anodizing on PM Al-Mg composite Mohd Nasuha Ab. Halim Nazree Derman, Dr. (Advisor) Powder metallurgy Materials engineering Composite materials Aluminum Aluminium alloys Hard coat anodizing This research is being conducted to investigate an effect occurring on anodizing process on powder metallurgy Aluminium-Magnesium (PM Al-Mg) composite. Composite materials are fabricated by using powder metallurgy method which is consist of mixing, compaction, and sintering. After fabrication, composite materials are undergoes to anodizing processes by using sulphuric acid as an electrolyte on 3°C. Anodizing processes is done using 90 volt of electrical current and 30 Ampere of DC current. This research is covered about percentage of sulphuric acid concentration as an electrolyte and duration of anodizing processes. Sulphuric acid concentration that used in this project are being divided into 4 classes which is 5%, 10%, 15% and 20%, meanwhile anodizing processes duration is raging from 10, 20, 30, 40, 50 and 60 minutes. A major objective in this project is to find the best solution among parameter used in this project. 2009-03-02T02:50:51Z 2009-03-02T02:50:51Z 2008-05 http://hdl.handle.net/123456789/4847 en University Malaysia Perlis School of Materials Engineering
institution Universiti Malaysia Perlis
building UniMAP Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Perlis
content_source UniMAP Library Digital Repository
url_provider http://dspace.unimap.edu.my/
language English
topic Powder metallurgy
Materials engineering
Composite materials
Aluminum
Aluminium alloys
Hard coat anodizing
spellingShingle Powder metallurgy
Materials engineering
Composite materials
Aluminum
Aluminium alloys
Hard coat anodizing
Mohd Nasuha Ab. Halim
A study of hardcoat anodizing on PM Al-Mg composite
description This research is being conducted to investigate an effect occurring on anodizing process on powder metallurgy Aluminium-Magnesium (PM Al-Mg) composite. Composite materials are fabricated by using powder metallurgy method which is consist of mixing, compaction, and sintering. After fabrication, composite materials are undergoes to anodizing processes by using sulphuric acid as an electrolyte on 3°C. Anodizing processes is done using 90 volt of electrical current and 30 Ampere of DC current. This research is covered about percentage of sulphuric acid concentration as an electrolyte and duration of anodizing processes. Sulphuric acid concentration that used in this project are being divided into 4 classes which is 5%, 10%, 15% and 20%, meanwhile anodizing processes duration is raging from 10, 20, 30, 40, 50 and 60 minutes. A major objective in this project is to find the best solution among parameter used in this project.
author2 Nazree Derman, Dr. (Advisor)
author_facet Nazree Derman, Dr. (Advisor)
Mohd Nasuha Ab. Halim
format
author Mohd Nasuha Ab. Halim
author_sort Mohd Nasuha Ab. Halim
title A study of hardcoat anodizing on PM Al-Mg composite
title_short A study of hardcoat anodizing on PM Al-Mg composite
title_full A study of hardcoat anodizing on PM Al-Mg composite
title_fullStr A study of hardcoat anodizing on PM Al-Mg composite
title_full_unstemmed A study of hardcoat anodizing on PM Al-Mg composite
title_sort study of hardcoat anodizing on pm al-mg composite
publisher University Malaysia Perlis
publishDate 2009
url http://dspace.unimap.edu.my/xmlui/handle/123456789/4847
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score 13.18916