Investigation of Reaction Mechanism, Structure and Mechanical Properties of the In-situ Composites Fabricated in Al-V2O5-NiO System

In this study, fabrication of an in-situ composite through aluminothermic combustion synthesis in An Al–V2O5-NiO system was investigated. Therefore, Al, V2O5 and NiO powders with stoichiometric ratio of 11:1:1, respectively, were milled for an  hour and finally the mixtur...

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Main Authors: F. Mirarabshahi, A. Mashreghi, M. Kalantar, M. Mosalaei
Format: Article
Language:fas
Published: Isfahan University of Technology 2017-02-01
Series:Journal of Advanced Materials in Engineering
Subjects:
Online Access:http://jame.iut.ac.ir/browse.php?a_code=A-10-1-726&slc_lang=en&sid=1
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spelling doaj-d786b232da2d45088f138a98fe2a9d5f2021-02-02T04:40:48ZfasIsfahan University of TechnologyJournal of Advanced Materials in Engineering1025-28512423-57332017-02-013546981Investigation of Reaction Mechanism, Structure and Mechanical Properties of the In-situ Composites Fabricated in Al-V2O5-NiO SystemF. Mirarabshahi0A. Mashreghi1M. Kalantar2M. Mosalaei3 In this study, fabrication of an in-situ composite through aluminothermic combustion synthesis in An Al–V2O5-NiO system was investigated. Therefore, Al, V2O5 and NiO powders with stoichiometric ratio of 11:1:1, respectively, were milled for an  hour and finally the mixtures were compressed. In order to investigate the temperatures of phase transformations, Differential Thermal Analysis (DTA) was utilized. Heat treatment was applied on the raw samples according to their peak temperatures treated in DTA. X Ray Diffraction (XRD) analysis for the samples shows formation of phases such as Al3V and Al3Ni2 at different sintering temperatures. Microstructure and phase analysis showed that during sintering of this sample, Al3V phase was not formed below 700 °C, at 880 °C Al3Ni2 it was formed and after 950 °C, it was transformed to Al4Ni3 phase. In addition, after 950°C, Al3V transformed into Al23V4 phase. Analysis of samples density and hardness showed that, due to increase of volume fraction percentages of reinforcing phase, these two parameters increase as well.http://jame.iut.ac.ir/browse.php?a_code=A-10-1-726&slc_lang=en&sid=1In-situ composite Alumiothermic Intermetallic and ceramic compounds Combustion synthesis
collection DOAJ
language fas
format Article
sources DOAJ
author F. Mirarabshahi
A. Mashreghi
M. Kalantar
M. Mosalaei
spellingShingle F. Mirarabshahi
A. Mashreghi
M. Kalantar
M. Mosalaei
Investigation of Reaction Mechanism, Structure and Mechanical Properties of the In-situ Composites Fabricated in Al-V2O5-NiO System
Journal of Advanced Materials in Engineering
In-situ composite
Alumiothermic
Intermetallic and ceramic compounds
Combustion synthesis
author_facet F. Mirarabshahi
A. Mashreghi
M. Kalantar
M. Mosalaei
author_sort F. Mirarabshahi
title Investigation of Reaction Mechanism, Structure and Mechanical Properties of the In-situ Composites Fabricated in Al-V2O5-NiO System
title_short Investigation of Reaction Mechanism, Structure and Mechanical Properties of the In-situ Composites Fabricated in Al-V2O5-NiO System
title_full Investigation of Reaction Mechanism, Structure and Mechanical Properties of the In-situ Composites Fabricated in Al-V2O5-NiO System
title_fullStr Investigation of Reaction Mechanism, Structure and Mechanical Properties of the In-situ Composites Fabricated in Al-V2O5-NiO System
title_full_unstemmed Investigation of Reaction Mechanism, Structure and Mechanical Properties of the In-situ Composites Fabricated in Al-V2O5-NiO System
title_sort investigation of reaction mechanism, structure and mechanical properties of the in-situ composites fabricated in al-v2o5-nio system
publisher Isfahan University of Technology
series Journal of Advanced Materials in Engineering
issn 1025-2851
2423-5733
publishDate 2017-02-01
description In this study, fabrication of an in-situ composite through aluminothermic combustion synthesis in An Al–V2O5-NiO system was investigated. Therefore, Al, V2O5 and NiO powders with stoichiometric ratio of 11:1:1, respectively, were milled for an  hour and finally the mixtures were compressed. In order to investigate the temperatures of phase transformations, Differential Thermal Analysis (DTA) was utilized. Heat treatment was applied on the raw samples according to their peak temperatures treated in DTA. X Ray Diffraction (XRD) analysis for the samples shows formation of phases such as Al3V and Al3Ni2 at different sintering temperatures. Microstructure and phase analysis showed that during sintering of this sample, Al3V phase was not formed below 700 °C, at 880 °C Al3Ni2 it was formed and after 950 °C, it was transformed to Al4Ni3 phase. In addition, after 950°C, Al3V transformed into Al23V4 phase. Analysis of samples density and hardness showed that, due to increase of volume fraction percentages of reinforcing phase, these two parameters increase as well.
topic In-situ composite
Alumiothermic
Intermetallic and ceramic compounds
Combustion synthesis
url http://jame.iut.ac.ir/browse.php?a_code=A-10-1-726&slc_lang=en&sid=1
work_keys_str_mv AT fmirarabshahi investigationofreactionmechanismstructureandmechanicalpropertiesoftheinsitucompositesfabricatedinalv2o5niosystem
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AT mkalantar investigationofreactionmechanismstructureandmechanicalpropertiesoftheinsitucompositesfabricatedinalv2o5niosystem
AT mmosalaei investigationofreactionmechanismstructureandmechanicalpropertiesoftheinsitucompositesfabricatedinalv2o5niosystem
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