Influence of Tribochemical Reaction on Friction and Wear Behavior of Metallic Materials in n-Hexane and in Ethanol

Cast iron, aluminum metal and sintered aluminum-silicon (Al-Si) were slid against SUS440C stainless steel in n-hexane and in ethanol. In the case of the cast iron/stainless steel and aluminum metal/stainless steel pairs, friction and wear were lower in n-hexane than in ethanol. In contrast, the fric...

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Main Authors: Yuko Hibi, Takashi Murakami, Hiroki Mano
Format: Article
Language:English
Published: Japanese Society of Tribologists 2016-04-01
Series:Tribology Online
Subjects:
Online Access:https://www.jstage.jst.go.jp/article/trol/11/2/11_174/_pdf/-char/en
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author Yuko Hibi
Takashi Murakami
Hiroki Mano
author_facet Yuko Hibi
Takashi Murakami
Hiroki Mano
author_sort Yuko Hibi
collection DOAJ
description Cast iron, aluminum metal and sintered aluminum-silicon (Al-Si) were slid against SUS440C stainless steel in n-hexane and in ethanol. In the case of the cast iron/stainless steel and aluminum metal/stainless steel pairs, friction and wear were lower in n-hexane than in ethanol. In contrast, the friction and wear for the sintered Al-Si/stainless steel pair were much higher in n-hexane than in ethanol. The results from morphological observations and chemical analyses of the worn surfaces suggested that the wear mechanism was influenced by the physical properties of the sliding materials and the tribochemical reactions between the sliding materials and lubricants.
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spelling doaj.art-050e7e13b8b94ff8a7e6aae6fb0451532022-12-21T20:38:08ZengJapanese Society of TribologistsTribology Online1881-21982016-04-0111217418210.2474/trol.11.174trolInfluence of Tribochemical Reaction on Friction and Wear Behavior of Metallic Materials in n-Hexane and in EthanolYuko Hibi0Takashi Murakami1Hiroki Mano2National Institute of Advanced Industrial Science and Technology (AIST)National Institute of Advanced Industrial Science and Technology (AIST)National Institute of Advanced Industrial Science and Technology (AIST)Cast iron, aluminum metal and sintered aluminum-silicon (Al-Si) were slid against SUS440C stainless steel in n-hexane and in ethanol. In the case of the cast iron/stainless steel and aluminum metal/stainless steel pairs, friction and wear were lower in n-hexane than in ethanol. In contrast, the friction and wear for the sintered Al-Si/stainless steel pair were much higher in n-hexane than in ethanol. The results from morphological observations and chemical analyses of the worn surfaces suggested that the wear mechanism was influenced by the physical properties of the sliding materials and the tribochemical reactions between the sliding materials and lubricants.https://www.jstage.jst.go.jp/article/trol/11/2/11_174/_pdf/-char/enaluminumsiliconcast ironethanolhexanefrictionwear
spellingShingle Yuko Hibi
Takashi Murakami
Hiroki Mano
Influence of Tribochemical Reaction on Friction and Wear Behavior of Metallic Materials in n-Hexane and in Ethanol
Tribology Online
aluminum
silicon
cast iron
ethanol
hexane
friction
wear
title Influence of Tribochemical Reaction on Friction and Wear Behavior of Metallic Materials in n-Hexane and in Ethanol
title_full Influence of Tribochemical Reaction on Friction and Wear Behavior of Metallic Materials in n-Hexane and in Ethanol
title_fullStr Influence of Tribochemical Reaction on Friction and Wear Behavior of Metallic Materials in n-Hexane and in Ethanol
title_full_unstemmed Influence of Tribochemical Reaction on Friction and Wear Behavior of Metallic Materials in n-Hexane and in Ethanol
title_short Influence of Tribochemical Reaction on Friction and Wear Behavior of Metallic Materials in n-Hexane and in Ethanol
title_sort influence of tribochemical reaction on friction and wear behavior of metallic materials in n hexane and in ethanol
topic aluminum
silicon
cast iron
ethanol
hexane
friction
wear
url https://www.jstage.jst.go.jp/article/trol/11/2/11_174/_pdf/-char/en
work_keys_str_mv AT yukohibi influenceoftribochemicalreactiononfrictionandwearbehaviorofmetallicmaterialsinnhexaneandinethanol
AT takashimurakami influenceoftribochemicalreactiononfrictionandwearbehaviorofmetallicmaterialsinnhexaneandinethanol
AT hirokimano influenceoftribochemicalreactiononfrictionandwearbehaviorofmetallicmaterialsinnhexaneandinethanol