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Microscopic Phase-Field Simulation of the Heat Treatment Process for Al-Zr Intermetallic Compound
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    Abstract:

    The aging processes of three different component Al-Zr alloys of Al-3at% Zr, Al-6at%Zr and Al-15at%Zr were simulated through the microscopic phase-field dynamic model. The results indicate that the precipitation mechanisms of the Al3Zr ordered phase of L12 structure are the spinodal decomposition, the mixed mechanism of spinodal decomposition and non-classical nucleation, and the non-classical nucleation for the Al-3at% Zr, Al-6at%Zr and Al-15at%Zr alloys, respectively. The ordered phase is in the order of supersaturated solid solution, G.P. zone, nonstoichiometric ordered phase, and stoichiometric ordered phase. At the initial stage of evolution, the smaller G.P. zone of lower concentration dissolved but the larger G.P. zone of higher concentration grew up to form an ordered phase at last

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[Zhang Lipeng, Chen Zheng, Wang Yongxin, Lu Yanli, Zhao Ya, Huo Jinliang. Microscopic Phase-Field Simulation of the Heat Treatment Process for Al-Zr Intermetallic Compound[J]. Rare Metal Materials and Engineering,2009,38(2):242~246.]
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  • Received:January 23,2008
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