The Effect of Alloy Addition on the High Temperature Properties of Over-Aged Al-Si(CuNiMg) Cast Alloys

Author:

Cho Young Hee1,Joo Dae Heon2,Kim Chul Hyun2,Lee Hu Chul1

Affiliation:

1. Seoul National University

2. Dong Yang Piston Co.Ltd

Abstract

The role of alloying elements in the improvement of the high temperature strength of Al-12Si(CuNiMg) cast alloys used for automotive piston applications was investigated. The addition of alloying elements such as Mn, Cr, Ti and Ge was studied and the detailed characterization of the composition and morphology of the constituent phases after over aging at 350 for 1000 hrs was performed. The compositions and volume fractions of the equilibrium phases determined by thermodynamic calculation were compared with the experimental results. The addition of transition elements, including Mn, Cr and Ti, increased the volume fraction of the intermetallic phases, which effectively enhanced the high temperature strength of the alloys. Among these transition elements, Mn turned out to be the most effective alloying element. After adding up to 0.5wt% of Mn, a large number of intermetallic phases, α-Al(Mn,Fe)Si as well as fine Al6(Mn,Fe) particles were precipitated and a significant improvement in the elevated temperature properties was achieved. The addition of Ge promoted the precipitation of the θphase (metastable phase, θ-Al2Cu), due to the formation of GeSi precipitates, thereby improved the mechanical properties of the alloy after T6 heat treatment. However, the presence of these GeSi precipitates did not affect the coarsening of the θ phase to form Qphase( Al5Cu2Mg8Si6) during aging and, thus, the elevated temperature properties were not improved by the addition of Ge.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference6 articles.

1. Young-Hee Cho, Young-Roc Im, Soon-Woo Kwon, and Hu-Chul Lee : Materials Science Forum, vols. 426-432(2003), pp.339-344.

2. A.K. Mukhopadhyay : Metall. Mater. Trans. A, vol. 32A(2001), p.1949-(1958).

3. B. Jansson, M. Schalin, M. Selleby, and B. Sundman : Computer Software in Chemical and Extractive Metallurgy, eds. C.W. Bale and G.A. Irins, Canadian Inst. Met., Quebec, (1993).

4. N. Saunders : TTAL4, TT Al-based Alloys Database (version 4. 0), Thermo Tech Ltd., Surrey Technology Centre, Guildford, UK.

5. C.R.S. Daykin : Microstructural Modelling of Commercial Aluminium-Silicon Alloys for Piston Applications, PhD Thesis, University of Cambridge, (1998).

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