Microstructure, tensile properties, and creep behavior of high-pressure die-cast Mg–4Al–4RE–0.4Mn (RE = La, Ce) alloys

被引:2
作者
Jinghuai Zhang
Ke Liu
Daqing Fang
Xin Qiu
Dingxiang Tang
Jian Meng
机构
[1] Chinese Academy of Sciences,State Key Laboratory of Rare Earth Resources Application, Changchun Institute of Applied Chemistry
[2] Graduate School of the Chinese Academy of Science,undefined
来源
Journal of Materials Science | 2009年 / 44卷
关键词
Magnesium Alloy; Creep Test; Inductively Couple Plasma Atomic Emission Spectroscopy; Minimum Creep Rate; Tensile Yield Strength;
D O I
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中图分类号
学科分类号
摘要
High-pressure die-cast (HPDC) Mg–4Al–4RE–0.4Mn (RE = La, Ce) magnesium alloys were prepared and their microstructures, tensile properties, and creep behavior have been investigated in detail. The results show that two binary Al–Ce phases, Al11Ce3 and Al2Ce, are formed mainly along grain boundaries in Mg–4Al–4Ce–0.4Mn alloy, while the phase composition of Mg–4Al–4La–0.4Mn alloy contains only α-Mg and Al11La3. The Al11La3 phase comprises large coverage of the grain boundary region and complicated morphologies. Compared with Al11Ce3 phase, the higher volume fraction and better thermal stability of Al11La3 have resulted in better-fortified grain boundaries of the Mg–4Al–4La–0.4Mn alloy. Thus higher tensile strength and creep resistance could be obtained in Mg–4Al–4La–0.4Mn alloy in comparison with that of Mg–4Al–4Ce–0.4Mn. Results of the theoretical calculation that the stability of Al11La3 is the highest among four Al–RE intermetallic compounds supports the experimental results further.
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页码:2046 / 2054
页数:8
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