Oxidation behavior of NiAl produced by gel combustion synthesis

This paper presents the results of a study of the oxidation behavior of NiAl produced by gel combustion synthesis calcined at two different temperatures. The objective is to compare the oxide growth rates, oxide scale composition, morphology and elemental composition of the sample powder subjected t...

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Main Authors: Gonsalvez, T.A., Manap, A., Afandi, N., Misran, H.
Format: Article
Language:English
Published: 2017
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spelling my.uniten.dspace-33992018-01-23T00:46:55Z Oxidation behavior of NiAl produced by gel combustion synthesis Gonsalvez, T.A. Manap, A. Afandi, N. Misran, H. This paper presents the results of a study of the oxidation behavior of NiAl produced by gel combustion synthesis calcined at two different temperatures. The objective is to compare the oxide growth rates, oxide scale composition, morphology and elemental composition of the sample powder subjected to isothermal oxidation and calcined at 1050 °C and 1300 °C for 1, 2, 4 and 10 hours by means of mass gain measurements, X-ray diffraction (XRD), field emission scanning electron microsocopy (FESEM) and energy-dispersive spectrometry (EDX) in order to investigate the reliability of the gel combustion synthesis method and evaluate the effect of calcination temperature on the oxidation behaviour of the powder. It was found that for the sample calcined at 1300°C the sample was made up mainly of metastable and stable alumina before oxidation and stable alpha alumina after oxidation whereas for the powder calcined at 1050°C the sample was mainly composed of detrimental mixed oxides before and after oxidation. Overall findings indicate that the oxidation behavior of the powder calcined at 1300°C is more protective compared to the powder calcined at 1050°C. © 2016 Trans Tech Publications, Switzerland. 2017-10-26T06:25:06Z 2017-10-26T06:25:06Z 2016 Article 10.4028/www.scientific.net/KEM.701.122 en Trans Tech Publications Ltd
institution Universiti Tenaga Nasional
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country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
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language English
description This paper presents the results of a study of the oxidation behavior of NiAl produced by gel combustion synthesis calcined at two different temperatures. The objective is to compare the oxide growth rates, oxide scale composition, morphology and elemental composition of the sample powder subjected to isothermal oxidation and calcined at 1050 °C and 1300 °C for 1, 2, 4 and 10 hours by means of mass gain measurements, X-ray diffraction (XRD), field emission scanning electron microsocopy (FESEM) and energy-dispersive spectrometry (EDX) in order to investigate the reliability of the gel combustion synthesis method and evaluate the effect of calcination temperature on the oxidation behaviour of the powder. It was found that for the sample calcined at 1300°C the sample was made up mainly of metastable and stable alumina before oxidation and stable alpha alumina after oxidation whereas for the powder calcined at 1050°C the sample was mainly composed of detrimental mixed oxides before and after oxidation. Overall findings indicate that the oxidation behavior of the powder calcined at 1300°C is more protective compared to the powder calcined at 1050°C. © 2016 Trans Tech Publications, Switzerland.
format Article
author Gonsalvez, T.A.
Manap, A.
Afandi, N.
Misran, H.
spellingShingle Gonsalvez, T.A.
Manap, A.
Afandi, N.
Misran, H.
Oxidation behavior of NiAl produced by gel combustion synthesis
author_facet Gonsalvez, T.A.
Manap, A.
Afandi, N.
Misran, H.
author_sort Gonsalvez, T.A.
title Oxidation behavior of NiAl produced by gel combustion synthesis
title_short Oxidation behavior of NiAl produced by gel combustion synthesis
title_full Oxidation behavior of NiAl produced by gel combustion synthesis
title_fullStr Oxidation behavior of NiAl produced by gel combustion synthesis
title_full_unstemmed Oxidation behavior of NiAl produced by gel combustion synthesis
title_sort oxidation behavior of nial produced by gel combustion synthesis
publishDate 2017
_version_ 1644493536876298240
score 13.201949