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Influence on the quality of secondary aluminum alloy casts by Mn addition

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The quality of aluminum casts is necessary in order to reach sufficient properties required for application. The decreasing in the properties of aluminum cast mainly related with microstructure, especially with size and morphology of second phases. One of such second phases in aluminum alloys are the β-phases. These phases are unwonted mainly because of the decreasing of mechanical properties. The contribution is deal with influence of addition of Mn to affecting the formation of βphases in the AlSi7Mg0.3 and AlSi7Mg0.6 cast alloys. These materials are used for application especially automotive industry. The results shows, that addition of Mn is not sufficient for affecting of formation of the Fe-rich phases in AlSi7Mg0.6 cat alloys, but in the AlSi7Mg0.3 this addition lead to changes in formation of Fe-rich intermetallic phases.
Wydawca
Rocznik
Strony
319--325
Opis fizyczny
Bibliogr. 14 poz., rys., tab.
Twórcy
  • University of Žilina, Faculty of Mechanical Engineering, Slovakia
autor
  • University of Žilina, Faculty of Mechanical Engineering, Slovakia
  • Czestochowa University of Technology, Faculty of Management, Poland
  • University of Žilina, Faculty of Mechanical Engineering, Slovakia
Bibliografia
  • 1.Belan, J. 2014. Quantitative Evaluation of alitize coating on ZS6K Ni-base seperalloy. Metalography XV, Materials science forum, 782, 578-583.
  • 2.Bidmeshki, C., Abouei, V., Saghafianb, H., Shabestari, H.G., Noghani, M.T. 2016. Effect of Mn addition on Fe-rich intermetallics morphology and dry sliding wear investigation of hypereutectic Al-17.5%Si alloys. Journal of Materials Research and Technology, 5/3, 250-258.
  • 3.Bilewicz, M., Palček, P., Tansky, T., Markovičová, L. 2013. Computer aided image analysisi of nanocomposites. Archives of Materials Science and Engineering, 64/ 2, 192-197.
  • 4.Bösch, D., Pogatscher, A., Hummel, M., Fragner, W., Uggowitzer, P.J., Göken, M., Höppel, H.W. 2014. Secondary Al-Si-Mg High-pressure Die Casting Alloys with Enhanced Ductility. Metallurgical and Materials Transactions A, 46/3, 1-11.
  • 5.Djurdjevič, M.B., Grzničin, M.A. 2012. The effect of major alloying elements on the size of the secondary dendrite arm spacing in the as-cast Al-Si-Cu alloys. Archives of Foundry engineering, 12/1, 19-24.
  • 6.Foundry Lexikon, Dendrite arm spacing, Available at: https://www.giessereilexikon.com/en/foundry-lexicon/Encyclopedia/show/ dendrite-arm-spacing-4536/?cHash=2270da0cb276b83fb18fdb72cf4ea2f8
  • 7.Hwang, J. Y., Doty, H.W., Kaufman, M. J. 2007. The effects of Mn additions on the microstructure and mechanical properties of Al–Si–Cu casting alloys. Materials Science and Engineering A 488, 496–504
  • 8.Rana, R.S., Purohit, R., Das, S. 2012. Reviews on the influence of alloying elements on the microstructure and mechanical properties of aluminum alloys and aluminum alloy composites. International Journal of Scientific and research publications, 2/6, 1-7.
  • 9.Puncreobutr, C., Philion, A.B., Fife, J.L., Rockett T.P., Horsfield, A.P., Lee, P.D. 2014. In situ quantification of the nucleation and growth of Fe-rich intermetallic during Al alloy solidification. Acta Materialia, 79, 292-303.
  • 10.Shabestari, S.G. 2004. The effect of iron and manganese on the formation of intermetallic compounds in aluminum-silicon alloys. Materials Science and engineering A 383/2, 289-298.
  • 11.Taylor, J.A. 2004. The Effect of Iron in Al-Si Casting Alloys. Cooperative Research Centre for Cast Metals Manufacturing (CAST). The University of Queensland Brisbane, Australia, 1-10.
  • 12.Taylor, J.A. 2012. Iron-containing intermetallic phases in Al-Si based casting alloys. Procedia Materials Science, 1, 19-33.
  • 13.Vaško, A. 2016 Evaluation of shape of graphite particles in cast irons by shape factore. Materials Today-proceedings. 3 / 4, 1199-1204.
  • 14.Zatkalíková, V., Oravcová, M. Palček, P., Markovičová, L. 2017. The effect of surface treatment on corrosion resistance of austenitic biomaterial. Transactions of Famena, 41/4, 25-34.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2020).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-c19dc4f1-1ede-48f6-ae7d-6c57fff5d26e
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