Effect of microporosity on tensile properties of as-cast AZ91D magnesium alloy

被引:0
作者
Choong Do Lee
机构
[1] Daewoo Motors Co,Technical Center
来源
Metals and Materials International | 2002年 / 8卷
关键词
AZ91D alloy; microporosity; tensile property; strain hardening exponent; interdendritic feeding; hydrogen gas; plastic deformation;
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摘要
In the present study, the effect of microporosity on the tensile properties of as-cast AZ91D magnesium alloy was investigated through experimental observation and numerical prediction. The test specimens were fabricated by die-casting and gravity-casting. For gravity-casting, the inoculation and use of various metallic moulds were applied to obtain a wide range of microporosity. The deficiency of the interdendritic feeding of the liquid phase acted as a dominant mechanism on the formation of the micropores in the Mg−Al-alloys, rather than the evolution of hydrogen gas. Although tensile strength and elongation has a nonlinear and very intensive dependence upon microporosity, the yield strength appeared to have a linear relationship with microporosity. However, it was possible to quantitatively estimate the linear contribution of microporosity on the individual tensile property for a range of microporosity, which was below about 1%. The numerical prediction suggests that the effect of microporosity on fractured strength and elongation decreased as the strain hardening exponent increased. Furthermore, the shape and distribution of micropores may play a more dominant role than local plastic deformation on the tensile behavior of AZ91D alloy.
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页码:283 / 288
页数:5
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共 29 条
[1]  
Feinberg I. J.(1958)undefined Trans AFS 66 409-409
[2]  
Grimsley J. D.(1960)undefined Trans AFS 68 245-245
[3]  
Green R. D.(2000)undefined J. Kor. Inst. Met. & Mater. 38 1225-1225
[4]  
Lee C. D.(1995)undefined Scripta metall. 32 1851-1851
[5]  
Choi S. S.(1986)undefined Scripta metall. 20 1281-1281
[6]  
Kang C. S.(1996)undefined Mater. Sci. Eng. A 220 109-109
[7]  
Shin K. S.(1981)undefined Trans. Ind. Inst. Met. 34 169-169
[8]  
Cáceres C. H.(1990)undefined Am. Foundrymens Soc. Trans. 98 735-735
[9]  
Surappa M. K.(2000)undefined Metals and Materials 6 1225-1225
[10]  
Blank E.(1996)undefined J. Jpn. Inst. Light Metal 46 55-55