Isochronal study of Al-Mg, Al-Mn, and Al-Mn-Mg alloys using electrical resistivity and thermoelectric power

We have studied the phase transformation kinetics occurring in aluminum alloys containing Mn, Mg, and Mn-Mn-Mg by means of electrical resistivity (rho) and thermoelectric power (deltaS). The alloy samples were annealed isochronally at temperatures ranging from ambient temperature to 615 °C. Both rho...

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Main Author: Ney José Luiggi Agreda
Format: Article
Language:English
Published: Associação Brasileira de Metalurgia e Materiais (ABM); Associação Brasileira de Cerâmica (ABC); Associação Brasileira de Polímeros (ABPol) 2005-03-01
Series:Materials Research
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1516-14392005000100007
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spelling doaj-5a7fc88ff1374bf0b760c05d931be5492020-11-24T22:38:54ZengAssociação Brasileira de Metalurgia e Materiais (ABM); Associação Brasileira de Cerâmica (ABC); Associação Brasileira de Polímeros (ABPol)Materials Research1516-14392005-03-0181313710.1590/S1516-14392005000100007Isochronal study of Al-Mg, Al-Mn, and Al-Mn-Mg alloys using electrical resistivity and thermoelectric powerNey José Luiggi AgredaWe have studied the phase transformation kinetics occurring in aluminum alloys containing Mn, Mg, and Mn-Mn-Mg by means of electrical resistivity (rho) and thermoelectric power (deltaS). The alloy samples were annealed isochronally at temperatures ranging from ambient temperature to 615 °C. Both rho and deltaS allowed the separation of several stages of transformation associated to either the precipitation or dissolution of phases that occur during the annealing process. The alloys containing Mn show a strong deltaS growth or a marked r drop between 450 °C and 550 °C, linked to the precipitation of the Mn-rich Al6(Mn,FE) equilibrium phase. While the Mg in aluminum generates a series of maxima and minima of both rho and deltaS associated to the pre-established precipitation sequence: GP Zones <FONT FACE=Symbol>® b</FONT>' phase <FONT FACE=Symbol>® b</FONT> phase, a combination of effects ensues in the Mn- and Mg-containing alloys, the Mg effect being enhanced at temperatures below 350 °C and that of the Mn striking the same behavior above such temperature. Our study ascertains that the Mg speeds up the precipitation and lowers the activation energy of the Al6(Mn,Fe) phase, the latter having been evaluated by the multiple temperature method.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1516-14392005000100007Al-MnAl-MgAl-Mn-Mg Alloysphase precipitation kineticselectrical resistivitythermoelectric poweraluminum alloys of the 3000 series
collection DOAJ
language English
format Article
sources DOAJ
author Ney José Luiggi Agreda
spellingShingle Ney José Luiggi Agreda
Isochronal study of Al-Mg, Al-Mn, and Al-Mn-Mg alloys using electrical resistivity and thermoelectric power
Materials Research
Al-Mn
Al-Mg
Al-Mn-Mg Alloys
phase precipitation kinetics
electrical resistivity
thermoelectric power
aluminum alloys of the 3000 series
author_facet Ney José Luiggi Agreda
author_sort Ney José Luiggi Agreda
title Isochronal study of Al-Mg, Al-Mn, and Al-Mn-Mg alloys using electrical resistivity and thermoelectric power
title_short Isochronal study of Al-Mg, Al-Mn, and Al-Mn-Mg alloys using electrical resistivity and thermoelectric power
title_full Isochronal study of Al-Mg, Al-Mn, and Al-Mn-Mg alloys using electrical resistivity and thermoelectric power
title_fullStr Isochronal study of Al-Mg, Al-Mn, and Al-Mn-Mg alloys using electrical resistivity and thermoelectric power
title_full_unstemmed Isochronal study of Al-Mg, Al-Mn, and Al-Mn-Mg alloys using electrical resistivity and thermoelectric power
title_sort isochronal study of al-mg, al-mn, and al-mn-mg alloys using electrical resistivity and thermoelectric power
publisher Associação Brasileira de Metalurgia e Materiais (ABM); Associação Brasileira de Cerâmica (ABC); Associação Brasileira de Polímeros (ABPol)
series Materials Research
issn 1516-1439
publishDate 2005-03-01
description We have studied the phase transformation kinetics occurring in aluminum alloys containing Mn, Mg, and Mn-Mn-Mg by means of electrical resistivity (rho) and thermoelectric power (deltaS). The alloy samples were annealed isochronally at temperatures ranging from ambient temperature to 615 °C. Both rho and deltaS allowed the separation of several stages of transformation associated to either the precipitation or dissolution of phases that occur during the annealing process. The alloys containing Mn show a strong deltaS growth or a marked r drop between 450 °C and 550 °C, linked to the precipitation of the Mn-rich Al6(Mn,FE) equilibrium phase. While the Mg in aluminum generates a series of maxima and minima of both rho and deltaS associated to the pre-established precipitation sequence: GP Zones <FONT FACE=Symbol>® b</FONT>' phase <FONT FACE=Symbol>® b</FONT> phase, a combination of effects ensues in the Mn- and Mg-containing alloys, the Mg effect being enhanced at temperatures below 350 °C and that of the Mn striking the same behavior above such temperature. Our study ascertains that the Mg speeds up the precipitation and lowers the activation energy of the Al6(Mn,Fe) phase, the latter having been evaluated by the multiple temperature method.
topic Al-Mn
Al-Mg
Al-Mn-Mg Alloys
phase precipitation kinetics
electrical resistivity
thermoelectric power
aluminum alloys of the 3000 series
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1516-14392005000100007
work_keys_str_mv AT neyjoseluiggiagreda isochronalstudyofalmgalmnandalmnmgalloysusingelectricalresistivityandthermoelectricpower
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