Effect of heat treatment on the structural and magnetic properties of the system Fe56.25 Al43.75 prepared by mechanical alloying

The study of the Fe56.25 Al43.75 system prepared by Mechanical Alloying (MA), using elementary powders, at different times (12, 24, 48, 72 and 96 hours), named MA0 samples, showed that the alloy is consolidated at 48 hours. Taking the sample for this time it was compacted at 1 ton, encapsulated in a...

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Main Author: Hernandez , Juan Sebastian Trujillo
Format: Online
Language:Portuguese
Published: Universidade Estadual de Campinas 2020
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Online Access:https://econtents.sbu.unicamp.br/eventos/index.php/phyproceedings/article/view/3247
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author Hernandez , Juan Sebastian Trujillo
author_facet Hernandez , Juan Sebastian Trujillo
author_sort Hernandez , Juan Sebastian Trujillo
collection Portal de Eventos Científicos da UNICAMP
container_reference Physicae Proceedings; Vol. 1 No. 1 (2012): Proceedings XI Young Researchers Meeting ; 1-1
description The study of the Fe56.25 Al43.75 system prepared by Mechanical Alloying (MA), using elementary powders, at different times (12, 24, 48, 72 and 96 hours), named MA0 samples, showed that the alloy is consolidated at 48 hours. Taking the sample for this time it was compacted at 1 ton, encapsulated in an Ar filled quartz tube and a heat treatment at 700?C for 9 days was performed. Then the thermally treated samples, were mechanically alloyed (1, 4, 8, 12, 24 and 48 hours), named MA1 samples. For all samples, a magnetic and structural properties study was conducted by Mössbauer Spectrometry (MS) and X-Ray Diffraction (XRD). XRD results for MA0 samples allow us to consider the system as a nanostructured one who presents a single disordered BCC phase where the lattice parameter is approximately constant (2.900 ) and a decrease of the crystallite size with increasing milling time was found. For the thermally treated sample XRD results show that they exhibit some degree of ordering. The XRD patterns allow us to identify the following phases, FeAl, Fe3Al, FeO and ?-Fe which tend to disappear with milling time. Additionally an Fe-Al metallurgical phase was proposed. MS results for the MA0 samples a ferromagnetic phase was found. An increase in the mean hyperfine field (MHF) was found resulting from the MA induced structural disorder. From MS of MA1 samples it was found that for times (0, 1, 4, 8 and 12 hours), there is a tendency to ordering and the presence of a doublet with QS = 0.48 mm s-1 and ?exp = 0.50 mm s-1, that we associate to the FeAl phase, needs to be included. Likewise for times (24 and 48 hours), we obtained a doublet with QS = 0.95 mm s-1 and ?exp = 0.30 mm s-1, associated with the FeO phase (wüstite), maybe due to an oxidation promoted by a leak in the seal of the jars.
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spelling ojs-article-32472020-05-15T15:30:07Z Effect of heat treatment on the structural and magnetic properties of the system Fe56.25 Al43.75 prepared by mechanical alloying Hernandez , Juan Sebastian Trujillo Mechanical Alloying Mossbauer Spectrometry The study of the Fe56.25 Al43.75 system prepared by Mechanical Alloying (MA), using elementary powders, at different times (12, 24, 48, 72 and 96 hours), named MA0 samples, showed that the alloy is consolidated at 48 hours. Taking the sample for this time it was compacted at 1 ton, encapsulated in an Ar filled quartz tube and a heat treatment at 700?C for 9 days was performed. Then the thermally treated samples, were mechanically alloyed (1, 4, 8, 12, 24 and 48 hours), named MA1 samples. For all samples, a magnetic and structural properties study was conducted by Mössbauer Spectrometry (MS) and X-Ray Diffraction (XRD). XRD results for MA0 samples allow us to consider the system as a nanostructured one who presents a single disordered BCC phase where the lattice parameter is approximately constant (2.900 ) and a decrease of the crystallite size with increasing milling time was found. For the thermally treated sample XRD results show that they exhibit some degree of ordering. The XRD patterns allow us to identify the following phases, FeAl, Fe3Al, FeO and ?-Fe which tend to disappear with milling time. Additionally an Fe-Al metallurgical phase was proposed. MS results for the MA0 samples a ferromagnetic phase was found. An increase in the mean hyperfine field (MHF) was found resulting from the MA induced structural disorder. From MS of MA1 samples it was found that for times (0, 1, 4, 8 and 12 hours), there is a tendency to ordering and the presence of a doublet with QS = 0.48 mm s-1 and ?exp = 0.50 mm s-1, that we associate to the FeAl phase, needs to be included. Likewise for times (24 and 48 hours), we obtained a doublet with QS = 0.95 mm s-1 and ?exp = 0.30 mm s-1, associated with the FeO phase (wüstite), maybe due to an oxidation promoted by a leak in the seal of the jars. Universidade Estadual de Campinas 2020-05-15 info:eu-repo/semantics/article info:eu-repo/semantics/publishedVersion application/pdf https://econtents.sbu.unicamp.br/eventos/index.php/phyproceedings/article/view/3247 Physicae Proceedings; Vol. 1 No. 1 (2012): Proceedings XI Young Researchers Meeting ; 1-1 Physicae Proceedings; v. 1 n. 1 (2012): Proceedings XI Young Researchers Meeting ; 1-1 2236-7535 por https://econtents.sbu.unicamp.br/eventos/index.php/phyproceedings/article/view/3247/3183 Copyright (c) 2012 Physicae
spellingShingle Hernandez , Juan Sebastian Trujillo
Mechanical Alloying
Mossbauer Spectrometry
Effect of heat treatment on the structural and magnetic properties of the system Fe56.25 Al43.75 prepared by mechanical alloying
title Effect of heat treatment on the structural and magnetic properties of the system Fe56.25 Al43.75 prepared by mechanical alloying
title_full Effect of heat treatment on the structural and magnetic properties of the system Fe56.25 Al43.75 prepared by mechanical alloying
title_fullStr Effect of heat treatment on the structural and magnetic properties of the system Fe56.25 Al43.75 prepared by mechanical alloying
title_full_unstemmed Effect of heat treatment on the structural and magnetic properties of the system Fe56.25 Al43.75 prepared by mechanical alloying
title_short Effect of heat treatment on the structural and magnetic properties of the system Fe56.25 Al43.75 prepared by mechanical alloying
title_sort effect of heat treatment on the structural and magnetic properties of the system fe56.25 al43.75 prepared by mechanical alloying
topic Mechanical Alloying
Mossbauer Spectrometry
url https://econtents.sbu.unicamp.br/eventos/index.php/phyproceedings/article/view/3247
work_keys_str_mv AT hernandezjuansebastiantrujillo effectofheattreatmentonthestructuralandmagneticpropertiesofthesystemfe5625al4375preparedbymechanicalalloying