Characterization of dispersion strengthened copper with 3wt%Al2O3 by mechanical alloying

The copper matrix has been dispersion strengthened with 3wt.%Al2O3 by mechanical alloying. Commercial alumina powder with an average particle size of 0.75mm was used for alloying. The mechanical alloying process was performed in a planetary ball mill up to 20h in air. After milling all powders were...

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Main Authors: Rajković Višeslava, Erić Olivera, Božić Dušan, Mitkov M., Romhanji Endre
Format: Article
Language:English
Published: International Institute for the Science of Sintering, Beograd 2004-01-01
Series:Science of Sintering
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/0350-820X/2004/0350-820X0403205R.pdf
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spelling doaj-6e59bc0ff4ff4ad483eaea3ae00d96b62020-11-25T02:16:42ZengInternational Institute for the Science of Sintering, BeogradScience of Sintering0350-820X2004-01-0136320521110.2298/SOS0403205RCharacterization of dispersion strengthened copper with 3wt%Al2O3 by mechanical alloyingRajković VišeslavaErić OliveraBožić DušanMitkov M.Romhanji EndreThe copper matrix has been dispersion strengthened with 3wt.%Al2O3 by mechanical alloying. Commercial alumina powder with an average particle size of 0.75mm was used for alloying. The mechanical alloying process was performed in a planetary ball mill up to 20h in air. After milling all powders were treated in H2 at 4000C for 1h, and finally hot pressing was used for compaction (800oC, 3h, Ar). Structure observations revealed a lamellar structure (Al2O3 particles largely restricted to interlamellar planes between adjacent copper lamellae) accompanied also by structure refinement. These structural changes were mostly completed in the early stage of milling, and retained after compaction. Micro hardness was found to progressively increase with milling time. So, after 5h of milling the micro hardness of the Cu+3twt%Al2O3 compact was 1540MPa, i.e. 2.5 times greater than for the as-received electrolytic copper powder (638MPa) compacted under identical conditions, while after 20h of milling it was 2370 MPa. However after exposing the tested compact at 800oC up to 5h, the achieved hardening effect vanished. http://www.doiserbia.nb.rs/img/doi/0350-820X/2004/0350-820X0403205R.pdfdispersion strengthened coppermechanical alloyingmicro hardness
collection DOAJ
language English
format Article
sources DOAJ
author Rajković Višeslava
Erić Olivera
Božić Dušan
Mitkov M.
Romhanji Endre
spellingShingle Rajković Višeslava
Erić Olivera
Božić Dušan
Mitkov M.
Romhanji Endre
Characterization of dispersion strengthened copper with 3wt%Al2O3 by mechanical alloying
Science of Sintering
dispersion strengthened copper
mechanical alloying
micro hardness
author_facet Rajković Višeslava
Erić Olivera
Božić Dušan
Mitkov M.
Romhanji Endre
author_sort Rajković Višeslava
title Characterization of dispersion strengthened copper with 3wt%Al2O3 by mechanical alloying
title_short Characterization of dispersion strengthened copper with 3wt%Al2O3 by mechanical alloying
title_full Characterization of dispersion strengthened copper with 3wt%Al2O3 by mechanical alloying
title_fullStr Characterization of dispersion strengthened copper with 3wt%Al2O3 by mechanical alloying
title_full_unstemmed Characterization of dispersion strengthened copper with 3wt%Al2O3 by mechanical alloying
title_sort characterization of dispersion strengthened copper with 3wt%al2o3 by mechanical alloying
publisher International Institute for the Science of Sintering, Beograd
series Science of Sintering
issn 0350-820X
publishDate 2004-01-01
description The copper matrix has been dispersion strengthened with 3wt.%Al2O3 by mechanical alloying. Commercial alumina powder with an average particle size of 0.75mm was used for alloying. The mechanical alloying process was performed in a planetary ball mill up to 20h in air. After milling all powders were treated in H2 at 4000C for 1h, and finally hot pressing was used for compaction (800oC, 3h, Ar). Structure observations revealed a lamellar structure (Al2O3 particles largely restricted to interlamellar planes between adjacent copper lamellae) accompanied also by structure refinement. These structural changes were mostly completed in the early stage of milling, and retained after compaction. Micro hardness was found to progressively increase with milling time. So, after 5h of milling the micro hardness of the Cu+3twt%Al2O3 compact was 1540MPa, i.e. 2.5 times greater than for the as-received electrolytic copper powder (638MPa) compacted under identical conditions, while after 20h of milling it was 2370 MPa. However after exposing the tested compact at 800oC up to 5h, the achieved hardening effect vanished.
topic dispersion strengthened copper
mechanical alloying
micro hardness
url http://www.doiserbia.nb.rs/img/doi/0350-820X/2004/0350-820X0403205R.pdf
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AT mitkovm characterizationofdispersionstrengthenedcopperwith3wtal2o3bymechanicalalloying
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