Faculty of Chemistry Repository - Cherry
University of Belgrade - Faculty of Chemistry
    • English
    • Српски
    • Српски (Serbia)
  • English 
    • English
    • Serbian (Cyrillic)
    • Serbian (Latin)
  • Login
View Item 
  •   Cherry
  • Inovacioni centar
  • Publikacije
  • View Item
  •   Cherry
  • Inovacioni centar
  • Publikacije
  • View Item
JavaScript is disabled for your browser. Some features of this site may not work without it.

The analysis of the tribological properties of multiple strengthened nanocomposite of the Cu-Al2O3 system

Thumbnail
2011
6_Korac_MJoM_1701.pdf (234.0Kb)
Authors
Korać, Marija
Kamberović, Željko
Anđić, Zoran
Tasić, Miloš
Vujović, Aleksandar
Article (Published version)
Metadata
Show full item record
Abstract
This paper presents the results of examined tribological properties of the multiple strengthened nanocomposite Cu-Al2O3 system. Cu-Al2O3 composite powder was obtained by combination of the thermo-chemical procedure and mechanical alloying, which is a completely new approach to synthesis of these materials. The synthesized powders were cold pressed with 940MPa and sintered in hydrogen atmosphere in temperature range of 725-925oC during 15-120 minutes. The samples were thermomechanically treated in two stages after sintering: cold rolling with the final reduction degree of 30% and annealing at 800oC for 1h in hydrogen atmosphere. Characterization of the sintered, rolled and annealed samples included the microstructural examination by scanning electron microscopy (SEM), the quantitative analysis of the SEM microphotographs and the examination on tribological properties. Tribological examinations have shown that the best wear resistance have the samples after heat treatment. Th...e significant influence on the tribological properties has the effect of multiple strengthening mechanisms. These mechanisms include strengthening of copper matrix achieved by dispersion of fine particles of Al2O3, strengthening by the grain boundaries due of the appearance of nanosized Al2O3 particles and the CuxAlyOz phase, as well as by deformation strengthening and strengthening by annealing. Based on the results of the quantitative analysis and tribological examinations, it can be concluded that apart from these strengthening effects porosity also has a significant influence on the tribological properties, i.e. reduction of the volume share in porosity improves tribological properties.

Keywords:
copper / Al2O3 / multiple strengthening / tribological properties
Source:
Metalurgija - Journal of Metallurgy MЈoM, 2011, 17, 1, 49-55
Publisher:
  • Association of Metallurgical Engineers of Serbia AMES
Funding / projects:
  • Dobijanje nanostrukturnih prahova u cilju proizvodnje novih disperzno ojačanih sinterovanih materijala u sistemu Cu-Al2O3 (RS-19032)

ISSN: 0345-6306

[ Google Scholar ]
Handle
https://hdl.handle.net/21.15107/rcub_cherry_5333
URI
http://cherry.chem.bg.ac.rs/handle/123456789/5333
Collections
  • Publikacije
Institution/Community
Inovacioni centar
TY  - JOUR
AU  - Korać, Marija
AU  - Kamberović, Željko
AU  - Anđić, Zoran
AU  - Tasić, Miloš
AU  - Vujović, Aleksandar
PY  - 2011
UR  - http://cherry.chem.bg.ac.rs/handle/123456789/5333
AB  - This paper presents the results of examined tribological properties of the multiple
strengthened nanocomposite Cu-Al2O3 system. Cu-Al2O3 composite powder was
obtained by combination of the thermo-chemical procedure and mechanical alloying,
which is a completely new approach to synthesis of these materials. The synthesized
powders were cold pressed with 940MPa and sintered in hydrogen atmosphere in
temperature range of 725-925oC during 15-120 minutes. The samples were thermomechanically
treated in two stages after sintering: cold rolling with the final reduction
degree of 30% and annealing at 800oC for 1h in hydrogen atmosphere. Characterization
of the sintered, rolled and annealed samples included the microstructural examination
by scanning electron microscopy (SEM), the quantitative analysis of the SEM
microphotographs and the examination on tribological properties. Tribological
examinations have shown that the best wear resistance have the samples after heat
treatment. The significant influence on the tribological properties has the effect of
multiple strengthening mechanisms. These mechanisms include strengthening of copper
matrix achieved by dispersion of fine particles of Al2O3, strengthening by the grain
boundaries due of the appearance of nanosized Al2O3 particles and the CuxAlyOz phase,
as well as by deformation strengthening and strengthening by annealing. Based on the
results of the quantitative analysis and tribological examinations, it can be concluded
that apart from these strengthening effects porosity also has a significant influence on the tribological properties, i.e. reduction of the volume share in porosity improves
tribological properties.
PB  - Association of Metallurgical Engineers of Serbia AMES
T2  - Metalurgija - Journal of Metallurgy MЈoM
T1  - The analysis of the tribological properties of multiple strengthened nanocomposite of the Cu-Al2O3 system
VL  - 17
IS  - 1
SP  - 49
EP  - 55
UR  - https://hdl.handle.net/21.15107/rcub_cherry_5333
ER  - 
@article{
author = "Korać, Marija and Kamberović, Željko and Anđić, Zoran and Tasić, Miloš and Vujović, Aleksandar",
year = "2011",
abstract = "This paper presents the results of examined tribological properties of the multiple
strengthened nanocomposite Cu-Al2O3 system. Cu-Al2O3 composite powder was
obtained by combination of the thermo-chemical procedure and mechanical alloying,
which is a completely new approach to synthesis of these materials. The synthesized
powders were cold pressed with 940MPa and sintered in hydrogen atmosphere in
temperature range of 725-925oC during 15-120 minutes. The samples were thermomechanically
treated in two stages after sintering: cold rolling with the final reduction
degree of 30% and annealing at 800oC for 1h in hydrogen atmosphere. Characterization
of the sintered, rolled and annealed samples included the microstructural examination
by scanning electron microscopy (SEM), the quantitative analysis of the SEM
microphotographs and the examination on tribological properties. Tribological
examinations have shown that the best wear resistance have the samples after heat
treatment. The significant influence on the tribological properties has the effect of
multiple strengthening mechanisms. These mechanisms include strengthening of copper
matrix achieved by dispersion of fine particles of Al2O3, strengthening by the grain
boundaries due of the appearance of nanosized Al2O3 particles and the CuxAlyOz phase,
as well as by deformation strengthening and strengthening by annealing. Based on the
results of the quantitative analysis and tribological examinations, it can be concluded
that apart from these strengthening effects porosity also has a significant influence on the tribological properties, i.e. reduction of the volume share in porosity improves
tribological properties.",
publisher = "Association of Metallurgical Engineers of Serbia AMES",
journal = "Metalurgija - Journal of Metallurgy MЈoM",
title = "The analysis of the tribological properties of multiple strengthened nanocomposite of the Cu-Al2O3 system",
volume = "17",
number = "1",
pages = "49-55",
url = "https://hdl.handle.net/21.15107/rcub_cherry_5333"
}
Korać, M., Kamberović, Ž., Anđić, Z., Tasić, M.,& Vujović, A.. (2011). The analysis of the tribological properties of multiple strengthened nanocomposite of the Cu-Al2O3 system. in Metalurgija - Journal of Metallurgy MЈoM
Association of Metallurgical Engineers of Serbia AMES., 17(1), 49-55.
https://hdl.handle.net/21.15107/rcub_cherry_5333
Korać M, Kamberović Ž, Anđić Z, Tasić M, Vujović A. The analysis of the tribological properties of multiple strengthened nanocomposite of the Cu-Al2O3 system. in Metalurgija - Journal of Metallurgy MЈoM. 2011;17(1):49-55.
https://hdl.handle.net/21.15107/rcub_cherry_5333 .
Korać, Marija, Kamberović, Željko, Anđić, Zoran, Tasić, Miloš, Vujović, Aleksandar, "The analysis of the tribological properties of multiple strengthened nanocomposite of the Cu-Al2O3 system" in Metalurgija - Journal of Metallurgy MЈoM, 17, no. 1 (2011):49-55,
https://hdl.handle.net/21.15107/rcub_cherry_5333 .

DSpace software copyright © 2002-2015  DuraSpace
About CHERRY - CHEmistry RepositoRY | Send Feedback

re3dataOpenAIRERCUB
 

 

All of DSpaceInstitutions/communitiesAuthorsTitlesSubjectsThis institutionAuthorsTitlesSubjects

Statistics

View Usage Statistics

DSpace software copyright © 2002-2015  DuraSpace
About CHERRY - CHEmistry RepositoRY | Send Feedback

re3dataOpenAIRERCUB