The characteristic of porosity in Al-SiC metal-matrix composite under different milling time

Organized by School of Materials Engineering & Sustainable Engineering Research Cluster, 1st - 2nd December 2009 at Putra Brasmana Hotel, Kuala Perlis, Perlis.

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Bibliographic Details
Main Authors: Nozie, Abdullah, Shahruddin, Mahzan, Ade Firdianto, Norashida, Arsat, Darwin, Sebayang, Al Imran, Ismail
Other Authors: sharudin@uthm.edu.my
Format: Working Paper
Language:English
Published: Universiti Malaysia Perlis 2010
Subjects:
Online Access:http://dspace.unimap.edu.my/xmlui/handle/123456789/7515
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spelling my.unimap-75152010-01-18T14:45:05Z The characteristic of porosity in Al-SiC metal-matrix composite under different milling time Nozie, Abdullah Shahruddin, Mahzan Ade Firdianto Norashida, Arsat Darwin, Sebayang Al Imran, Ismail sharudin@uthm.edu.my Powder metallurgy Porosity Ball-milling Composites Metal matrix composite Mechanical strength Organized by School of Materials Engineering & Sustainable Engineering Research Cluster, 1st - 2nd December 2009 at Putra Brasmana Hotel, Kuala Perlis, Perlis. Powder metallurgy has been extensively investigated due to high mechanical strength and potentially for cost reduction. The current investigated the performance of aluminium and silicon carbide powder in producing alternative materials for engineering applications. The research focuses on the influence of porosity on the Al-SiC metal matrix composite. Aluminium Al 5082 and silicon carbide mixture was produced using conventional ball milling, cold compaction under static loading and sintering process. Various ball-milling durations was introduced for 1, 24 and 48 hours. The characteristics of porosity under different milling time, density, hardness and microstructure were analysed. The results indicate different percentage of porosity occurred for different milling time. The best milling time was 24 hours which produced the highest hardness value. This indicates the presence of pores during ball milling process influenced the overall performance of powdered material. 2010-01-18T14:44:08Z 2010-01-18T14:44:08Z 2009-12-01 Working Paper p.1-5 http://hdl.handle.net/123456789/7515 en Proceedings of the Malaysian Metallurgical Conference '09 (MMC'09) Universiti Malaysia Perlis
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
Porosity
Ball-milling
Composites
Metal matrix composite
Mechanical strength
spellingShingle Powder metallurgy
Porosity
Ball-milling
Composites
Metal matrix composite
Mechanical strength
Nozie, Abdullah
Shahruddin, Mahzan
Ade Firdianto
Norashida, Arsat
Darwin, Sebayang
Al Imran, Ismail
The characteristic of porosity in Al-SiC metal-matrix composite under different milling time
description Organized by School of Materials Engineering & Sustainable Engineering Research Cluster, 1st - 2nd December 2009 at Putra Brasmana Hotel, Kuala Perlis, Perlis.
author2 sharudin@uthm.edu.my
author_facet sharudin@uthm.edu.my
Nozie, Abdullah
Shahruddin, Mahzan
Ade Firdianto
Norashida, Arsat
Darwin, Sebayang
Al Imran, Ismail
format Working Paper
author Nozie, Abdullah
Shahruddin, Mahzan
Ade Firdianto
Norashida, Arsat
Darwin, Sebayang
Al Imran, Ismail
author_sort Nozie, Abdullah
title The characteristic of porosity in Al-SiC metal-matrix composite under different milling time
title_short The characteristic of porosity in Al-SiC metal-matrix composite under different milling time
title_full The characteristic of porosity in Al-SiC metal-matrix composite under different milling time
title_fullStr The characteristic of porosity in Al-SiC metal-matrix composite under different milling time
title_full_unstemmed The characteristic of porosity in Al-SiC metal-matrix composite under different milling time
title_sort characteristic of porosity in al-sic metal-matrix composite under different milling time
publisher Universiti Malaysia Perlis
publishDate 2010
url http://dspace.unimap.edu.my/xmlui/handle/123456789/7515
_version_ 1643788848879108096
score 13.18916