Effect of silver content on the wear and mechanical properties of powder metallurgical Ti-5Al-2.5Fe-xAg alloys

In the current research, the effect of Ag on the mechanical properties of Ti5Al2.5Fe alloy was investigated. The Ti5Al2.5Fe alloy, with different amounts of Ag ranged from 1 to 5 wt. % was prepared by mechanical mixing and then fabricated by hot pressing at 950°C for 15 min under 50 MPa. Three holdi...

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Main Authors: Yamanoglu R., Khoshnaw F., Daoud I., Efendi E.
Format: Article
Language:English
Published: University of Belgrade, Technical Faculty, Bor 2020-01-01
Series:Journal of Mining and Metallurgy. Section B: Metallurgy
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Online Access:http://www.doiserbia.nb.rs/img/doi/1450-5339/2020/1450-53391900056Y.pdf
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author Yamanoglu R.
Khoshnaw F.
Daoud I.
Efendi E.
author_facet Yamanoglu R.
Khoshnaw F.
Daoud I.
Efendi E.
author_sort Yamanoglu R.
collection DOAJ
description In the current research, the effect of Ag on the mechanical properties of Ti5Al2.5Fe alloy was investigated. The Ti5Al2.5Fe alloy, with different amounts of Ag ranged from 1 to 5 wt. % was prepared by mechanical mixing and then fabricated by hot pressing at 950°C for 15 min under 50 MPa. Three holding steps were applied to the powder compacts to restrain the liquid phases inside graphite die before reaching the maximum sintering temperature. The sintered samples were subjected to hardness, bending and wear tests to study the effect Ag on the mechanical properties of Ti5Al2.5Fe alloy. The microstructural characterization was carried out by means of optical and scanning electron microscope. The results showed that Ag played a differential role on the mechanical properties supported by microstructural constituents. The bending strength and hardness of the produced samples increased with the addition of Ag, the hardness of the alloys then tended to decrease with increasing Ag content but still remained above the hardness of Ti5Al2.5Fe alloy. Wear test also showed similar trends with hardness test results. Finally, the optimum Ag content for the Ti5Al2.5Fe alloy was determined as 1 wt.%. XRD analysis showed that undissolved Ag content was the main reason for the decrease in the mechanical properties.
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record_format Article
series Journal of Mining and Metallurgy. Section B: Metallurgy
spelling doaj-art-65eb8f762f4b42bea1caaec1e5e314b42025-02-02T10:05:56ZengUniversity of Belgrade, Technical Faculty, BorJournal of Mining and Metallurgy. Section B: Metallurgy1450-53392217-71752020-01-0156111912510.2298/JMMB190319056Y1450-53391900056YEffect of silver content on the wear and mechanical properties of powder metallurgical Ti-5Al-2.5Fe-xAg alloysYamanoglu R.0Khoshnaw F.1Daoud I.2Efendi E.3Kocaeli University, Department of Metallurgical and Materials Engineering, Izmit, TurkeyDe Montfort University, School of Engineering and Sustainable Development, Leichester, United KingdomUniversity of Sciences and Technology Houari Boumediene, Laboratory of Science and Materials Engineering, AlgeriaKocaeli University, Department of Metallurgical and Materials Engineering, Izmit, TurkeyIn the current research, the effect of Ag on the mechanical properties of Ti5Al2.5Fe alloy was investigated. The Ti5Al2.5Fe alloy, with different amounts of Ag ranged from 1 to 5 wt. % was prepared by mechanical mixing and then fabricated by hot pressing at 950°C for 15 min under 50 MPa. Three holding steps were applied to the powder compacts to restrain the liquid phases inside graphite die before reaching the maximum sintering temperature. The sintered samples were subjected to hardness, bending and wear tests to study the effect Ag on the mechanical properties of Ti5Al2.5Fe alloy. The microstructural characterization was carried out by means of optical and scanning electron microscope. The results showed that Ag played a differential role on the mechanical properties supported by microstructural constituents. The bending strength and hardness of the produced samples increased with the addition of Ag, the hardness of the alloys then tended to decrease with increasing Ag content but still remained above the hardness of Ti5Al2.5Fe alloy. Wear test also showed similar trends with hardness test results. Finally, the optimum Ag content for the Ti5Al2.5Fe alloy was determined as 1 wt.%. XRD analysis showed that undissolved Ag content was the main reason for the decrease in the mechanical properties.http://www.doiserbia.nb.rs/img/doi/1450-5339/2020/1450-53391900056Y.pdfti5al2.5fe alloysilver contentmicrostructurewear
spellingShingle Yamanoglu R.
Khoshnaw F.
Daoud I.
Efendi E.
Effect of silver content on the wear and mechanical properties of powder metallurgical Ti-5Al-2.5Fe-xAg alloys
Journal of Mining and Metallurgy. Section B: Metallurgy
ti5al2.5fe alloy
silver content
microstructure
wear
title Effect of silver content on the wear and mechanical properties of powder metallurgical Ti-5Al-2.5Fe-xAg alloys
title_full Effect of silver content on the wear and mechanical properties of powder metallurgical Ti-5Al-2.5Fe-xAg alloys
title_fullStr Effect of silver content on the wear and mechanical properties of powder metallurgical Ti-5Al-2.5Fe-xAg alloys
title_full_unstemmed Effect of silver content on the wear and mechanical properties of powder metallurgical Ti-5Al-2.5Fe-xAg alloys
title_short Effect of silver content on the wear and mechanical properties of powder metallurgical Ti-5Al-2.5Fe-xAg alloys
title_sort effect of silver content on the wear and mechanical properties of powder metallurgical ti 5al 2 5fe xag alloys
topic ti5al2.5fe alloy
silver content
microstructure
wear
url http://www.doiserbia.nb.rs/img/doi/1450-5339/2020/1450-53391900056Y.pdf
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