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SOLIDIFICATION BEHAVIOR AND GRAIN SIZE OF SAND CASTING Mg-6Al-xZn ALLOYS |
HOU Danhui1,2, LIANG Songmao3, CHEN Rongshi2( ), DONG Chuang1 |
1 Institute of Material Science and Engineering, Dalian University of Techonlogy, Dalian 116024 2 Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110016 3 Institute of Metallurgy, Clausthal University of Technology, Clausthal-Zellerfeld, Germany, 38678 |
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Cite this article:
HOU Danhui, LIANG Songmao, CHEN Rongshi, DONG Chuang. SOLIDIFICATION BEHAVIOR AND GRAIN SIZE OF SAND CASTING Mg-6Al-xZn ALLOYS. Acta Metall Sin, 2014, 50(5): 601-609.
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Abstract The solidification behavior and microstructure evolution of sand cast Mg-6Al-xZn alloy (named as AZ6x alloys, x=0, 2, 4, 6, mass fraction, %) were characterized by two-thermocouple thermal analysis technology and SEM. The grain sizes of the alloys were quantitatively determined by EBSD technology. Thermodynamic calculations were applied in Pandat software for phase diagram calculation, Scheil model solidification simulation and growth restriction factor values (GRF or values). The results show that solidification of AZ6x alloys follows non-equilibrium solidification paths. Besides the γ-Mg17Al12 phase, which is the only secondary phase in AZ60 alloy, another Φ-Mg21(Al, Zn)17 phase appears in the as-cast microstructure of AZ62 to AZ66 alloys. With the increase of the Zn content, the amount of γ-Mg17Al12 phase decreases and while increase the amount of Φ-Mg21(Al, Zn)17 phase. Calculated equilibrium phase diagram shows that in the AZ60~AZ64 alloys both γ-Mg17Al12 phase and Φ-Mg21(Al, Zn)17 phase can be dissolved into α-Mg under proper heat treatment conditions. However, Φ-Mg21(Al, Zn)17 phase in AZ66 alloy can not be completely dissolved into a-Mg for any temperature. The results also indicate that higher Zn content alloys have higher values and smaller grain size, and lower solid fraction at dendrite coherency point (?sDCP). The relationship of values, grain size and ?sDCP has been also discussed.
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Received: 05 September 2013
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Fund: National Basic Research Program of China (No.2013CB632202) and National Natural Science Foundation of China ( Nos.51105350 and 51301173) |
About author: null
侯丹辉, 男, 1982年生, 博士生 |
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