EXPERIMENTALl ANALYSIS OF PARTITION COEFFICIENT IN Al-Mg ALLOYS
Because the partition coefficient is one of the most important parameters affecting microsegregation, the aim of this research is to experimentally analyse the partition coefficient in Al-Mg alloys. In order to experimentally measure the partition coefficient, a series of quenching experiments durin...
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Iran University of Science & Technology
2016-06-01
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doaj-1e06473f9557405db6d12dfc9e7300ce2020-11-24T22:52:38ZengIran University of Science & TechnologyIranian Journal of Materials Science and Engineering1735-08082383-38822016-06-011326272EXPERIMENTALl ANALYSIS OF PARTITION COEFFICIENT IN Al-Mg ALLOYSM.H. Avazkonandeh-Gharavo0M. . Haddad-Sabzevar1H. Fredriksson2 Department of Materials and Polymer Engineering, Faculty of Engineering, Hakim Sabzevari University, Sabzevar, Iran Department of Materials Science and Engineering, Faculty of Engineering, Ferdowsi University of Mashhad, Mashhad, P.O. Box: 91775-1111, Iran Department of Materials Science and Engineering, Royal Institute of Technology (KTH), Brinellvägen 23, 100 44 Stockholm, Sweden Because the partition coefficient is one of the most important parameters affecting microsegregation, the aim of this research is to experimentally analyse the partition coefficient in Al-Mg alloys. In order to experimentally measure the partition coefficient, a series of quenching experiments during solidification were carried out. For this purpose binary Al-Mg alloys containing 6.7 and 10.2 wt-% Mg were melted and solidified in a DTA furnace capable of quenching samples during solidification. Cooling rates of 0.5 and 5 K/min were used and samples were quenched from predetermined temperatures during solidification. The fractions and compositions of the phases were measured by quantitative metallography and SEM/EDX analyses, respectively. These results were used to measure the experimental partition coefficients. The resultant partition coefficients were used to model the concentration profile in the primary phase and the results were compared with equilibrium calculations and experimental profiles. The results of calculations based on the experimental partition coefficients show better consistency with experimental concentration profiles than the equilibrium calculations.http://ijmse.iust.ac.ir/browse.php?a_code=A-10-25-1&slc_lang=en&sid=1Partition Coefficient Microsegregation Al-Mg Alloys Differential Thermal Analysis |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
M.H. Avazkonandeh-Gharavo M. . Haddad-Sabzevar H. Fredriksson |
spellingShingle |
M.H. Avazkonandeh-Gharavo M. . Haddad-Sabzevar H. Fredriksson EXPERIMENTALl ANALYSIS OF PARTITION COEFFICIENT IN Al-Mg ALLOYS Iranian Journal of Materials Science and Engineering Partition Coefficient Microsegregation Al-Mg Alloys Differential Thermal Analysis |
author_facet |
M.H. Avazkonandeh-Gharavo M. . Haddad-Sabzevar H. Fredriksson |
author_sort |
M.H. Avazkonandeh-Gharavo |
title |
EXPERIMENTALl ANALYSIS OF PARTITION COEFFICIENT IN Al-Mg ALLOYS |
title_short |
EXPERIMENTALl ANALYSIS OF PARTITION COEFFICIENT IN Al-Mg ALLOYS |
title_full |
EXPERIMENTALl ANALYSIS OF PARTITION COEFFICIENT IN Al-Mg ALLOYS |
title_fullStr |
EXPERIMENTALl ANALYSIS OF PARTITION COEFFICIENT IN Al-Mg ALLOYS |
title_full_unstemmed |
EXPERIMENTALl ANALYSIS OF PARTITION COEFFICIENT IN Al-Mg ALLOYS |
title_sort |
experimentall analysis of partition coefficient in al-mg alloys |
publisher |
Iran University of Science & Technology |
series |
Iranian Journal of Materials Science and Engineering |
issn |
1735-0808 2383-3882 |
publishDate |
2016-06-01 |
description |
Because the partition coefficient is one of the most important parameters affecting microsegregation, the aim of this research is to experimentally analyse the partition coefficient in Al-Mg alloys. In order to experimentally measure the partition coefficient, a series of quenching experiments during solidification were carried out. For this purpose binary Al-Mg alloys containing 6.7 and 10.2 wt-% Mg were melted and solidified in a DTA furnace capable of quenching samples during solidification. Cooling rates of 0.5 and 5 K/min were used and samples were quenched from predetermined temperatures during solidification. The fractions and compositions of the phases were measured by quantitative metallography and SEM/EDX analyses, respectively. These results were used to measure the experimental partition coefficients. The resultant partition coefficients were used to model the concentration profile in the primary phase and the results were compared with equilibrium calculations and experimental profiles. The results of calculations based on the experimental partition coefficients show better consistency with experimental concentration profiles than the equilibrium calculations. |
topic |
Partition Coefficient Microsegregation Al-Mg Alloys Differential Thermal Analysis |
url |
http://ijmse.iust.ac.ir/browse.php?a_code=A-10-25-1&slc_lang=en&sid=1 |
work_keys_str_mv |
AT mhavazkonandehgharavo experimentallanalysisofpartitioncoefficientinalmgalloys AT mhaddadsabzevar experimentallanalysisofpartitioncoefficientinalmgalloys AT hfredriksson experimentallanalysisofpartitioncoefficientinalmgalloys |
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1725665299941818368 |