Effect of Gr Contents on Wear Properties of Al2024/MgO/Al2O3/Gr Hybrid Composites

In the present study, hybrid metal matrix composites, Al2024/10Al2O3, Al2024/10Al2O3/3MgO, Al2024/10Al2O3/6MgO, Al2024/10Al2O3/3MgO/1.5 Gr, Al2024/10Al2O3/3MgO/3Gr, and reinforcement samples (AA 2024) produced with powder metallurgy process. AA 2024 and reinforcement powders were determined mixture...

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Main Authors: Ovalı İsmail, Esen Cemal, Albayrak Sevda, Karakoç Halil
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201816702010
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spelling doaj-58059914715546f5beddf5c1571e3aa32021-02-02T03:21:28ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-011670201010.1051/matecconf/201816702010matecconf_ic4m-icdes2018_02010Effect of Gr Contents on Wear Properties of Al2024/MgO/Al2O3/Gr Hybrid CompositesOvalı İsmailEsen CemalAlbayrak SevdaKarakoç HalilIn the present study, hybrid metal matrix composites, Al2024/10Al2O3, Al2024/10Al2O3/3MgO, Al2024/10Al2O3/6MgO, Al2024/10Al2O3/3MgO/1.5 Gr, Al2024/10Al2O3/3MgO/3Gr, and reinforcement samples (AA 2024) produced with powder metallurgy process. AA 2024 and reinforcement powders were determined mixture rations and separately mixed during 30 minutes in a three-dimensional Turbula mixer. The mixed compositions were pressed at 300 MPa and sintered at 550°C during 1 h. After that, three materials were extruded at the same temperature. Experimental results show that hybrid metal matrix composites (HMMCs) a better wear resistance than the reinforcement samples because of higher hardness. Gr behave as a lubricant during wear process. The wear resistance of HMMCs can be optimized with controlling of the reinforcement content and type.https://doi.org/10.1051/matecconf/201816702010
collection DOAJ
language English
format Article
sources DOAJ
author Ovalı İsmail
Esen Cemal
Albayrak Sevda
Karakoç Halil
spellingShingle Ovalı İsmail
Esen Cemal
Albayrak Sevda
Karakoç Halil
Effect of Gr Contents on Wear Properties of Al2024/MgO/Al2O3/Gr Hybrid Composites
MATEC Web of Conferences
author_facet Ovalı İsmail
Esen Cemal
Albayrak Sevda
Karakoç Halil
author_sort Ovalı İsmail
title Effect of Gr Contents on Wear Properties of Al2024/MgO/Al2O3/Gr Hybrid Composites
title_short Effect of Gr Contents on Wear Properties of Al2024/MgO/Al2O3/Gr Hybrid Composites
title_full Effect of Gr Contents on Wear Properties of Al2024/MgO/Al2O3/Gr Hybrid Composites
title_fullStr Effect of Gr Contents on Wear Properties of Al2024/MgO/Al2O3/Gr Hybrid Composites
title_full_unstemmed Effect of Gr Contents on Wear Properties of Al2024/MgO/Al2O3/Gr Hybrid Composites
title_sort effect of gr contents on wear properties of al2024/mgo/al2o3/gr hybrid composites
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description In the present study, hybrid metal matrix composites, Al2024/10Al2O3, Al2024/10Al2O3/3MgO, Al2024/10Al2O3/6MgO, Al2024/10Al2O3/3MgO/1.5 Gr, Al2024/10Al2O3/3MgO/3Gr, and reinforcement samples (AA 2024) produced with powder metallurgy process. AA 2024 and reinforcement powders were determined mixture rations and separately mixed during 30 minutes in a three-dimensional Turbula mixer. The mixed compositions were pressed at 300 MPa and sintered at 550°C during 1 h. After that, three materials were extruded at the same temperature. Experimental results show that hybrid metal matrix composites (HMMCs) a better wear resistance than the reinforcement samples because of higher hardness. Gr behave as a lubricant during wear process. The wear resistance of HMMCs can be optimized with controlling of the reinforcement content and type.
url https://doi.org/10.1051/matecconf/201816702010
work_keys_str_mv AT ovalıismail effectofgrcontentsonwearpropertiesofal2024mgoal2o3grhybridcomposites
AT esencemal effectofgrcontentsonwearpropertiesofal2024mgoal2o3grhybridcomposites
AT albayraksevda effectofgrcontentsonwearpropertiesofal2024mgoal2o3grhybridcomposites
AT karakochalil effectofgrcontentsonwearpropertiesofal2024mgoal2o3grhybridcomposites
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