Dry sliding wear and compressive strength of Fe-Cr matrix composite with and without Al2O3 reinforcement

Proceeding of The Symposium on Business, Engineering and Industrial Application (ISBEIA 2011) at Langkawi, Malaysia on 25 September 2011 through 28 September 2011. Link to publisher's homepage at http://ezproxy.unimap.edu.my:2080/Xplore/dynhome.jsp?tag=1

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Main Authors: Shamsul, Baharin Jamaludin, Prof. Dr., Saidatulakmar, Shamsuddin, Zuhailawati, Hussain, Zainal Arifin, Ahmad
Other Authors: sbaharin@unimap.edu.my
Format: Working Paper
Language:English
Published: IEEE Conference Publications 2014
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Online Access:http://dspace.unimap.edu.my:80/dspace/handle/123456789/34507
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Institution: Universiti Malaysia Perlis
Language: English
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spelling my.unimap-345072014-05-19T09:22:33Z Dry sliding wear and compressive strength of Fe-Cr matrix composite with and without Al2O3 reinforcement Shamsul, Baharin Jamaludin, Prof. Dr. Saidatulakmar, Shamsuddin Zuhailawati, Hussain Zainal Arifin, Ahmad sbaharin@unimap.edu.my saida@perlis.uitm.edu.my zuhaila@eng.usm.my zainal@eng.usm.my Metal matrix composite Powder metallurgy Microhardness Wear Strength Proceeding of The Symposium on Business, Engineering and Industrial Application (ISBEIA 2011) at Langkawi, Malaysia on 25 September 2011 through 28 September 2011. Link to publisher's homepage at http://ezproxy.unimap.edu.my:2080/Xplore/dynhome.jsp?tag=1 Fe-Cr matrix composites reinforced with Al2O3 particulates fabricated by powder metallurgy (PM) method offer potential for cheaper wear resistance materials and high temperature application. The influence of Al2O3 amount on densification, micro-hardness, wear resistance and strength of the composites were evaluated. The results showed that Al2O3 yield good influence on Fe-Cr matrix composites. Increases the amount of Al2O3 to more than 5 wt% decreases composite's relative density. The micro-hardness and wear resistance of the composites improved with increasing amount of Al2O3 to 20 wt%. Beyond 10 wt% Al2O3 addition, the strength properties began to decrease with an increase in Al2O3 addition. Overall, the composites reinforced with 5 wt% Al2O3 exhibited the best results. 2014-05-19T06:45:58Z 2014-05-19T06:45:58Z 2011 Working Paper p. 549 – 553 978-1-4577-1548-8 (print) http://ieeexplore.ieee.org/xpls/abs_all.jsp?arnumber=6088878&tag=1 http://dspace.unimap.edu.my:80/dspace/handle/123456789/34507 10.1109/ISBEIA.2011.6088878 en Proceeding of The Symposium on Business, Engineering and Industrial Application (ISBEIA 2011); IEEE Conference Publications
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 Metal matrix composite
Powder metallurgy
Microhardness
Wear
Strength
spellingShingle Metal matrix composite
Powder metallurgy
Microhardness
Wear
Strength
Shamsul, Baharin Jamaludin, Prof. Dr.
Saidatulakmar, Shamsuddin
Zuhailawati, Hussain
Zainal Arifin, Ahmad
Dry sliding wear and compressive strength of Fe-Cr matrix composite with and without Al2O3 reinforcement
description Proceeding of The Symposium on Business, Engineering and Industrial Application (ISBEIA 2011) at Langkawi, Malaysia on 25 September 2011 through 28 September 2011. Link to publisher's homepage at http://ezproxy.unimap.edu.my:2080/Xplore/dynhome.jsp?tag=1
author2 sbaharin@unimap.edu.my
author_facet sbaharin@unimap.edu.my
Shamsul, Baharin Jamaludin, Prof. Dr.
Saidatulakmar, Shamsuddin
Zuhailawati, Hussain
Zainal Arifin, Ahmad
format Working Paper
author Shamsul, Baharin Jamaludin, Prof. Dr.
Saidatulakmar, Shamsuddin
Zuhailawati, Hussain
Zainal Arifin, Ahmad
author_sort Shamsul, Baharin Jamaludin, Prof. Dr.
title Dry sliding wear and compressive strength of Fe-Cr matrix composite with and without Al2O3 reinforcement
title_short Dry sliding wear and compressive strength of Fe-Cr matrix composite with and without Al2O3 reinforcement
title_full Dry sliding wear and compressive strength of Fe-Cr matrix composite with and without Al2O3 reinforcement
title_fullStr Dry sliding wear and compressive strength of Fe-Cr matrix composite with and without Al2O3 reinforcement
title_full_unstemmed Dry sliding wear and compressive strength of Fe-Cr matrix composite with and without Al2O3 reinforcement
title_sort dry sliding wear and compressive strength of fe-cr matrix composite with and without al2o3 reinforcement
publisher IEEE Conference Publications
publishDate 2014
url http://dspace.unimap.edu.my:80/dspace/handle/123456789/34507
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