Quantitative metallographic assessment of the electromagnetic casting influence on the microstructure of 7075 Al alloy
Abstract
This study presents an attempt to obtain the better quality of an aluminum super-high strength alloy by application of electromagnetic field during the casting process. The conventional continuous casting process of aluminum alloys causes many defects, such as surface imperfections, grain boundary segregation, non-uniform grain size, and porosity. The better ingot surface along with the homogeneous fine-grained microstructure, and hence the better mechanical properties of the ingot, can be achieved by applying the electromagnetic casting process. The microstructure characterization, accompanied by quantitative metallographic assessment, reveals that it is possible to avoid or decrease many defects of as cast ingots during electromagnetic casting process. In this article, the microstructure of the samples of as cast 7075 aluminum alloy, obtained with and without electromagnetic field influence, was analyzed by optical microscope and the variation of key alloying elements content, i.e., ...Zn and Mg, through the ingot cross section was examined by chemical analysis. Besides, the microstructural parameters such as dendrite arm spacing, interdendritic space width, as well as eutecticum and intermetallic phases volume fraction, were measured using linear method. The electromagnetic field influence on the microstructure of the as cast 7075 Al alloy was evaluated based on measured quantitative metallographic data.
Source:
Journal of Materials Science, 2012, 47, 2, 793-796Publisher:
- Springer, New York
Funding / projects:
DOI: 10.1007/s10853-011-5855-3
ISSN: 0022-2461
WoS: 000298326900025
Scopus: 2-s2.0-84855558099
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Institution/Community
Institut za tehnologiju nuklearnih i drugih mineralnih sirovinaTY - JOUR AU - Patarić, Aleksandra AU - Mihailović, Marija AU - Gulišija, Zvonko PY - 2012 UR - https://ritnms.itnms.ac.rs/handle/123456789/217 AB - This study presents an attempt to obtain the better quality of an aluminum super-high strength alloy by application of electromagnetic field during the casting process. The conventional continuous casting process of aluminum alloys causes many defects, such as surface imperfections, grain boundary segregation, non-uniform grain size, and porosity. The better ingot surface along with the homogeneous fine-grained microstructure, and hence the better mechanical properties of the ingot, can be achieved by applying the electromagnetic casting process. The microstructure characterization, accompanied by quantitative metallographic assessment, reveals that it is possible to avoid or decrease many defects of as cast ingots during electromagnetic casting process. In this article, the microstructure of the samples of as cast 7075 aluminum alloy, obtained with and without electromagnetic field influence, was analyzed by optical microscope and the variation of key alloying elements content, i.e., Zn and Mg, through the ingot cross section was examined by chemical analysis. Besides, the microstructural parameters such as dendrite arm spacing, interdendritic space width, as well as eutecticum and intermetallic phases volume fraction, were measured using linear method. The electromagnetic field influence on the microstructure of the as cast 7075 Al alloy was evaluated based on measured quantitative metallographic data. PB - Springer, New York T2 - Journal of Materials Science T1 - Quantitative metallographic assessment of the electromagnetic casting influence on the microstructure of 7075 Al alloy EP - 796 IS - 2 SP - 793 VL - 47 DO - 10.1007/s10853-011-5855-3 UR - conv_608 ER -
@article{ author = "Patarić, Aleksandra and Mihailović, Marija and Gulišija, Zvonko", year = "2012", abstract = "This study presents an attempt to obtain the better quality of an aluminum super-high strength alloy by application of electromagnetic field during the casting process. The conventional continuous casting process of aluminum alloys causes many defects, such as surface imperfections, grain boundary segregation, non-uniform grain size, and porosity. The better ingot surface along with the homogeneous fine-grained microstructure, and hence the better mechanical properties of the ingot, can be achieved by applying the electromagnetic casting process. The microstructure characterization, accompanied by quantitative metallographic assessment, reveals that it is possible to avoid or decrease many defects of as cast ingots during electromagnetic casting process. In this article, the microstructure of the samples of as cast 7075 aluminum alloy, obtained with and without electromagnetic field influence, was analyzed by optical microscope and the variation of key alloying elements content, i.e., Zn and Mg, through the ingot cross section was examined by chemical analysis. Besides, the microstructural parameters such as dendrite arm spacing, interdendritic space width, as well as eutecticum and intermetallic phases volume fraction, were measured using linear method. The electromagnetic field influence on the microstructure of the as cast 7075 Al alloy was evaluated based on measured quantitative metallographic data.", publisher = "Springer, New York", journal = "Journal of Materials Science", title = "Quantitative metallographic assessment of the electromagnetic casting influence on the microstructure of 7075 Al alloy", pages = "796-793", number = "2", volume = "47", doi = "10.1007/s10853-011-5855-3", url = "conv_608" }
Patarić, A., Mihailović, M.,& Gulišija, Z.. (2012). Quantitative metallographic assessment of the electromagnetic casting influence on the microstructure of 7075 Al alloy. in Journal of Materials Science Springer, New York., 47(2), 793-796. https://doi.org/10.1007/s10853-011-5855-3 conv_608
Patarić A, Mihailović M, Gulišija Z. Quantitative metallographic assessment of the electromagnetic casting influence on the microstructure of 7075 Al alloy. in Journal of Materials Science. 2012;47(2):793-796. doi:10.1007/s10853-011-5855-3 conv_608 .
Patarić, Aleksandra, Mihailović, Marija, Gulišija, Zvonko, "Quantitative metallographic assessment of the electromagnetic casting influence on the microstructure of 7075 Al alloy" in Journal of Materials Science, 47, no. 2 (2012):793-796, https://doi.org/10.1007/s10853-011-5855-3 ., conv_608 .