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Effect of Zirconium on the Solidification Path and Structural Properties of Commercial AlSi10MgCu Alloys

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Języki publikacji
EN
Abstrakty
EN
Comprehensive understanding of the melt quality is of vital importance for foundry man. The effect of each particular element need to be properly analysed. Therefore, the aim of this paper was to analyse the impact of various content of zirconium on the solidification path and structural characteristics (SDAS, grain size, porosity) of as cast commercial AlSi10MgCu alloys. It has been found that addition of zirconium up to 0.24 wt.% reduce significantly the grains size (from 3.5 mm to 1.2 mm), SDAS (from 57.3 μm to 50.4 μm) and porosity (from 19% to 5%), leading to production of sound cast parts.
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Twórcy
autor
  • Emak Linz GmBH, Zeppelinstrasse 24 4030 Linz, Austria
  • University of Žilina, Faculty of Mechanical Engineering, Department of Technological Engineering, Univerzitná 8215/1, 010 26 Žilina, Slovakia
  • Emak Linz GmBH, Zeppelinstrasse 24 4030 Linz, Austria
  • University of Žilina, Faculty of Mechanical Engineering, Department of Technological Engineering, Univerzitná 8215/1, 010 26 Žilina, Slovakia
autor
  • Emak Linz GmBH, Zeppelinstrasse 24 4030 Linz, Austria
Bibliografia
  • [1] L. H. Cupido, P. L. Żak, N. Mahomed, J. Lelito, G. Piwowarski, P. K. Krajewski, Experimental investigation of modified heat treatment of AK64-type Al-Si-Cu sand cast alloy, Archives of Metallurgy and Materials 60, 3, 2397-2402 (2015).
  • [2] B. Dybowski, J. Szymsza, Ł. Poloczek, A. Kielbus, Influence of the chemical composition on electrical conductivity and mechanical properties of the hypoeutectic Al-Si-Mg alloys, Archives of Metallurgy and Materials 61, 1, 2016, 353-360 (2016).
  • [3] Peter Hajduch, D. Bolibruchova, Mile B. Djurdjevic, Influence of Molybdenum on the structural properties and micro hardness of AlSi10Mg(Cu) alloy, Archive of Foudnry Engineering 18, 3, 19-24. (2018).
  • [4] Par Li Liu, Metallurgical parameters controlling evolution of microstructure in foundry alloys Al-Si-Mg and Al-Si-Cu, PhD Theses, April 2003, University of Quebec, Chicoutimi, Canada.
  • [5] A. Grauers, S. Sarasini, M. Karlström, Systems Perspectives on Electro mobility, (2013).
  • [6] F. Wang, D. Qiu, Z. L. Liu, J. A. Taylor, M. A. Easton, M. X. Zhang, Acta Materialia. 30, 1-10 (2013).
  • [7] G.H.G. Elizondo, Effect of Ni, Mn, Zr and Sc additoins on the performance of AlSiCuMg. PhD thesis, Université Du Québec À Chicoutimi, April (2016).
  • [8] P. Seperband, R. Mahmudi, F. Khomamizadeh, Scripta Materialia 52, 253-257 (2005).
  • [9] R. Mahmudi, P. Sepehrband, H. M. Ghasemi, Materials Letters 60, 2606-2610 (2006).
  • [10] M. Voncina, S. Kores., M. Ernecl, J. Medved, J. Min. Metall. 53(3) B, 423-428 (2017).
  • [11] J.-C. Zhang, D.-Y. Ding , W.-L. Zhang, S.-H. Kang, X.-L. Xu, Y.-J. Gao, G.-Z. Chen, W.-G. Chen, X.-H. You, Trans. Nonferrous Met. Soc. 24, 3872-3878 (2014).
  • [12] J. Campbel, AFS Cast Metal Research Journal. 5, 1-8 (1969).
Uwagi
EN
1. This article was created as part of the VEGA grant agency: 1/0494/17. The authors hereby thank the Agency for their support.
PL
2. 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-17e37914-6258-4067-8e12-cd751a0a0a42
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