Wear Behavior of Al2O3-Reinforced Aluminum Metal Matrix Composite in Water and in Ethanol

Aluminum metal matrix composite disks reinforced with alumina (Al2O3) were slid against silicon carbide (SiC) pins in water and in ethanol to evaluate the wear resistance. The wear of the composite slid against SiC in water was higher than that in ethanol. Oxidized aluminum compounds were formed by...

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Main Authors: Yuko Hibi, Miki Nakano, Hisato Ogiso
Format: Article
Language:English
Published: Japanese Society of Tribologists 2011-10-01
Series:Tribology Online
Subjects:
Online Access:https://www.jstage.jst.go.jp/article/trol/6/7/6_7_297/_pdf/-char/en
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author Yuko Hibi
Miki Nakano
Hisato Ogiso
author_facet Yuko Hibi
Miki Nakano
Hisato Ogiso
author_sort Yuko Hibi
collection DOAJ
description Aluminum metal matrix composite disks reinforced with alumina (Al2O3) were slid against silicon carbide (SiC) pins in water and in ethanol to evaluate the wear resistance. The wear of the composite slid against SiC in water was higher than that in ethanol. Oxidized aluminum compounds were formed by tribo-oxidation on the composite disk surfaces worn both in water and in ethanol. The amount of the oxidized aluminum compounds deposited on the wear tracks in water was much larger than that in ethanol. The significant oxidative wear took place in water, while oxidative wear and wear due to plastic deformation took place in ethanol.
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spelling doaj.art-e0321429a9994721b8e34c58966296622022-12-21T19:19:09ZengJapanese Society of TribologistsTribology Online1881-21982011-10-016729730010.2474/trol.6.297trolWear Behavior of Al2O3-Reinforced Aluminum Metal Matrix Composite in Water and in EthanolYuko Hibi0Miki Nakano1Hisato Ogiso2National Institute of Advanced Industrial Science and Technology (AIST), Advanced Manufacturing Research InstituteNational Institute of Advanced Industrial Science and Technology (AIST), Advanced Manufacturing Research InstituteNational Institute of Advanced Industrial Science and Technology (AIST), Advanced Manufacturing Research InstituteAluminum metal matrix composite disks reinforced with alumina (Al2O3) were slid against silicon carbide (SiC) pins in water and in ethanol to evaluate the wear resistance. The wear of the composite slid against SiC in water was higher than that in ethanol. Oxidized aluminum compounds were formed by tribo-oxidation on the composite disk surfaces worn both in water and in ethanol. The amount of the oxidized aluminum compounds deposited on the wear tracks in water was much larger than that in ethanol. The significant oxidative wear took place in water, while oxidative wear and wear due to plastic deformation took place in ethanol.https://www.jstage.jst.go.jp/article/trol/6/7/6_7_297/_pdf/-char/enaluminum metal matrix compositeweartribo-oxidationwaterethanol
spellingShingle Yuko Hibi
Miki Nakano
Hisato Ogiso
Wear Behavior of Al2O3-Reinforced Aluminum Metal Matrix Composite in Water and in Ethanol
Tribology Online
aluminum metal matrix composite
wear
tribo-oxidation
water
ethanol
title Wear Behavior of Al2O3-Reinforced Aluminum Metal Matrix Composite in Water and in Ethanol
title_full Wear Behavior of Al2O3-Reinforced Aluminum Metal Matrix Composite in Water and in Ethanol
title_fullStr Wear Behavior of Al2O3-Reinforced Aluminum Metal Matrix Composite in Water and in Ethanol
title_full_unstemmed Wear Behavior of Al2O3-Reinforced Aluminum Metal Matrix Composite in Water and in Ethanol
title_short Wear Behavior of Al2O3-Reinforced Aluminum Metal Matrix Composite in Water and in Ethanol
title_sort wear behavior of al2o3 reinforced aluminum metal matrix composite in water and in ethanol
topic aluminum metal matrix composite
wear
tribo-oxidation
water
ethanol
url https://www.jstage.jst.go.jp/article/trol/6/7/6_7_297/_pdf/-char/en
work_keys_str_mv AT yukohibi wearbehaviorofal2o3reinforcedaluminummetalmatrixcompositeinwaterandinethanol
AT mikinakano wearbehaviorofal2o3reinforcedaluminummetalmatrixcompositeinwaterandinethanol
AT hisatoogiso wearbehaviorofal2o3reinforcedaluminummetalmatrixcompositeinwaterandinethanol