Analysis of Chemical Composition Homogeneity in the Cross-section of the Rods Produced from Alloys of 6xxx Group

The alloys from Al–Mg–Si system provide an excellent combination of mechanical properties, heat treatment at extrusion temperature, good weldability, good corrosion resistance and formability. Owing to the high casting speed of rods or slabs, the solidification is rather non-equilibrium, resulting i...

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Main Authors: Vončina Maja, Cvahte Peter, Kračun Ana, Balaško Tilen, Medved Jožef
Format: Article
Language:English
Published: Sciendo 2020-04-01
Series:Materials and Geoenvironment
Subjects:
Online Access:https://doi.org/10.2478/rmzmag-2019-0018
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spelling doaj-345c745554984994aeed94b939ccb81d2021-09-05T14:01:28ZengSciendoMaterials and Geoenvironment1854-74002020-04-0166313914810.2478/rmzmag-2019-0018rmzmag-2019-0018Analysis of Chemical Composition Homogeneity in the Cross-section of the Rods Produced from Alloys of 6xxx GroupVončina Maja0Cvahte Peter1Kračun Ana2Balaško Tilen3Medved Jožef4Faculty of Natural Sciences and Engineering, Department for Materials and Metallurgy, University of Ljubljana, Ljubljana, SloveniaImpol Group, Partizanska 38, 2310Slovenska Bistrica, SloveniaImpol Group, Partizanska 38, 2310Slovenska Bistrica, SloveniaFaculty of Natural Sciences and Engineering, Department for Materials and Metallurgy, University of Ljubljana, Ljubljana, SloveniaFaculty of Natural Sciences and Engineering, Department for Materials and Metallurgy, University of Ljubljana, Ljubljana, SloveniaThe alloys from Al–Mg–Si system provide an excellent combination of mechanical properties, heat treatment at extrusion temperature, good weldability, good corrosion resistance and formability. Owing to the high casting speed of rods or slabs, the solidification is rather non-equilibrium, resulting in defects in the material, such as crystalline segregations, the formation of low-melting eutectics, the unfavourable shape of intermetallic phases and the non-homogeneously distributed alloying elements in the cross-section of the rods or slabs and in the entire microstructure. The inhomogeneity of the chemical composition and the solid solution negatively affects the strength, the formability in the warm and the corrosion resistance, and can lead to the formation of undesired phases due to segregation in the material. In this experimental investigation, the cross-sections of the rods from two different alloys of the 6xxx group were investigated. From the cross-sections of the rods, samples for differential scanning calorimetry (DSC) at three different positions (edge, D/4 and middle) were taken to determine the influence of inhomogeneity on the course of DSC curve. Metallographic sample preparation was used for microstructure analysis, whereas the actual chemical composition was analysed using a scanning electron microscope (SEM) and an energy dispersion spectrometer (EDS).https://doi.org/10.2478/rmzmag-2019-0018casted rods for extrusionhomogeneity of chemical compositiondsc analysis, microstructureliti drogovi za ekstrudiranjehomogenost kemične sestavedsc analizamikrostruktura
collection DOAJ
language English
format Article
sources DOAJ
author Vončina Maja
Cvahte Peter
Kračun Ana
Balaško Tilen
Medved Jožef
spellingShingle Vončina Maja
Cvahte Peter
Kračun Ana
Balaško Tilen
Medved Jožef
Analysis of Chemical Composition Homogeneity in the Cross-section of the Rods Produced from Alloys of 6xxx Group
Materials and Geoenvironment
casted rods for extrusion
homogeneity of chemical composition
dsc analysis, microstructure
liti drogovi za ekstrudiranje
homogenost kemične sestave
dsc analiza
mikrostruktura
author_facet Vončina Maja
Cvahte Peter
Kračun Ana
Balaško Tilen
Medved Jožef
author_sort Vončina Maja
title Analysis of Chemical Composition Homogeneity in the Cross-section of the Rods Produced from Alloys of 6xxx Group
title_short Analysis of Chemical Composition Homogeneity in the Cross-section of the Rods Produced from Alloys of 6xxx Group
title_full Analysis of Chemical Composition Homogeneity in the Cross-section of the Rods Produced from Alloys of 6xxx Group
title_fullStr Analysis of Chemical Composition Homogeneity in the Cross-section of the Rods Produced from Alloys of 6xxx Group
title_full_unstemmed Analysis of Chemical Composition Homogeneity in the Cross-section of the Rods Produced from Alloys of 6xxx Group
title_sort analysis of chemical composition homogeneity in the cross-section of the rods produced from alloys of 6xxx group
publisher Sciendo
series Materials and Geoenvironment
issn 1854-7400
publishDate 2020-04-01
description The alloys from Al–Mg–Si system provide an excellent combination of mechanical properties, heat treatment at extrusion temperature, good weldability, good corrosion resistance and formability. Owing to the high casting speed of rods or slabs, the solidification is rather non-equilibrium, resulting in defects in the material, such as crystalline segregations, the formation of low-melting eutectics, the unfavourable shape of intermetallic phases and the non-homogeneously distributed alloying elements in the cross-section of the rods or slabs and in the entire microstructure. The inhomogeneity of the chemical composition and the solid solution negatively affects the strength, the formability in the warm and the corrosion resistance, and can lead to the formation of undesired phases due to segregation in the material. In this experimental investigation, the cross-sections of the rods from two different alloys of the 6xxx group were investigated. From the cross-sections of the rods, samples for differential scanning calorimetry (DSC) at three different positions (edge, D/4 and middle) were taken to determine the influence of inhomogeneity on the course of DSC curve. Metallographic sample preparation was used for microstructure analysis, whereas the actual chemical composition was analysed using a scanning electron microscope (SEM) and an energy dispersion spectrometer (EDS).
topic casted rods for extrusion
homogeneity of chemical composition
dsc analysis, microstructure
liti drogovi za ekstrudiranje
homogenost kemične sestave
dsc analiza
mikrostruktura
url https://doi.org/10.2478/rmzmag-2019-0018
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