The effect of mechanical alloying on Al2O3 distribution and properties of Al2O3 particle reinforced Al-MMCs

The properties of particle-reinforced aluminum composites depend on the microstructure and evolved uniformity distribution of particles in the matrix. The distribution of Al2O3 particles in the matrix and microstructure properties of varying volume fraction of particles up to 15% Al2O3 particle-rein...

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Main Authors: Canakci Aykut, Varol Temel, Ertok Saban
Format: Article
Language:English
Published: De Gruyter 2012-09-01
Series:Science and Engineering of Composite Materials
Subjects:
Online Access:https://doi.org/10.1515/secm-2011-0122
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spelling doaj-2ca4fc7d0cc94db187bfe65ea4d0c02d2021-09-05T14:00:27ZengDe GruyterScience and Engineering of Composite Materials0792-12332191-03592012-09-0119322723510.1515/secm-2011-0122The effect of mechanical alloying on Al2O3 distribution and properties of Al2O3 particle reinforced Al-MMCsCanakci Aykut0Varol Temel1Ertok Saban2Department of Metallurgical and Materials Engineering, Karadeniz Technical University, Trabzon, TurkeyDepartment of Metallurgical and Materials Engineering, Karadeniz Technical University, Trabzon, TurkeyDepartment of Metallurgical and Materials Engineering, Karadeniz Technical University, Trabzon, TurkeyThe properties of particle-reinforced aluminum composites depend on the microstructure and evolved uniformity distribution of particles in the matrix. The distribution of Al2O3 particles in the matrix and microstructure properties of varying volume fraction of particles up to 15% Al2O3 particle-reinforced Al metal matrix composites produced by the mechanical alloying technique was investigated. Alloying was performed in a planetary ball mill using a milling time varying from 0 h to 7 h, a ball-to-powder ratio of 10:1, and a ball mill velocity of 400 rpm. The produced compositions were cold-pressed at 700 MPa with a single action and sintered at 600°C for 3 h under Argon gas atmosphere. The relative density (both pressed and sintered), porosity and hardness of composites were also examined. The results of mechanical alloying processing were investigated with scanning electron microscopy (SEM), X-ray diffraction and laser particle size analyzer. SEM observations showed that relatively homogeneous distribution of Al2O3 reinforcement in the matrix could be obtained by mechanical alloying after 5 h. Moreover, the variation in hardness of the composites with alumina volume fraction and milling time was observed to be a strong function of the work hardening mechanism.https://doi.org/10.1515/secm-2011-0122aluminum-based metal matrix composites (al-mmcs)al2o3mechanical alloying (ma)powder metallurgy
collection DOAJ
language English
format Article
sources DOAJ
author Canakci Aykut
Varol Temel
Ertok Saban
spellingShingle Canakci Aykut
Varol Temel
Ertok Saban
The effect of mechanical alloying on Al2O3 distribution and properties of Al2O3 particle reinforced Al-MMCs
Science and Engineering of Composite Materials
aluminum-based metal matrix composites (al-mmcs)
al2o3
mechanical alloying (ma)
powder metallurgy
author_facet Canakci Aykut
Varol Temel
Ertok Saban
author_sort Canakci Aykut
title The effect of mechanical alloying on Al2O3 distribution and properties of Al2O3 particle reinforced Al-MMCs
title_short The effect of mechanical alloying on Al2O3 distribution and properties of Al2O3 particle reinforced Al-MMCs
title_full The effect of mechanical alloying on Al2O3 distribution and properties of Al2O3 particle reinforced Al-MMCs
title_fullStr The effect of mechanical alloying on Al2O3 distribution and properties of Al2O3 particle reinforced Al-MMCs
title_full_unstemmed The effect of mechanical alloying on Al2O3 distribution and properties of Al2O3 particle reinforced Al-MMCs
title_sort effect of mechanical alloying on al2o3 distribution and properties of al2o3 particle reinforced al-mmcs
publisher De Gruyter
series Science and Engineering of Composite Materials
issn 0792-1233
2191-0359
publishDate 2012-09-01
description The properties of particle-reinforced aluminum composites depend on the microstructure and evolved uniformity distribution of particles in the matrix. The distribution of Al2O3 particles in the matrix and microstructure properties of varying volume fraction of particles up to 15% Al2O3 particle-reinforced Al metal matrix composites produced by the mechanical alloying technique was investigated. Alloying was performed in a planetary ball mill using a milling time varying from 0 h to 7 h, a ball-to-powder ratio of 10:1, and a ball mill velocity of 400 rpm. The produced compositions were cold-pressed at 700 MPa with a single action and sintered at 600°C for 3 h under Argon gas atmosphere. The relative density (both pressed and sintered), porosity and hardness of composites were also examined. The results of mechanical alloying processing were investigated with scanning electron microscopy (SEM), X-ray diffraction and laser particle size analyzer. SEM observations showed that relatively homogeneous distribution of Al2O3 reinforcement in the matrix could be obtained by mechanical alloying after 5 h. Moreover, the variation in hardness of the composites with alumina volume fraction and milling time was observed to be a strong function of the work hardening mechanism.
topic aluminum-based metal matrix composites (al-mmcs)
al2o3
mechanical alloying (ma)
powder metallurgy
url https://doi.org/10.1515/secm-2011-0122
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