Effect of Y, Sr, and Nd additions on the microstructure and microfracture mechanism of squeeze-cast AZ91-X magnesium alloys

被引:4
作者
Sunghak Lee
Seung Hyuk Lee
Do Hyang Kim
机构
[1] Pohang University of Science and Technology,the Center for Advanced Aerospace Materials
[2] Hyundai Electronics Industries Co.,Advanced Device Research Laboratory
[3] Ltd.,the Department of Metallurgical Engineering
[4] Yonsei University,undefined
来源
Metallurgical and Materials Transactions A | 1998年 / 29卷
关键词
Fracture Toughness; Material Transaction; Stress Intensity Factor; Magnesium Alloy; Planar Slip;
D O I
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中图分类号
学科分类号
摘要
This study aims to investigate the effects of Y, Sr, and Nd additions on the microstructure and microfracture mechanism of the four squeeze-cast magnesium alloys based on the commercial AZ91 alloy. Microstructural observation, in situ fracture tests, and fractographic observation were conducted on the alloys to clarify the microfracture process. Microstructural analyses indicated that grain refinement could be achieved by small additions of alloying elements, although the discontinuously precipitated Mg17Al12 phases still existed on grain boundaries. From in situ fracture observation of an AZ91-Sr alloy, it was seen that coarse needle-shaped compound particles and Mg17Al12 phases located on the grain boundary provided easy intergranular fracture sites under low stress intensity factor levels, resulting in the drop in toughness. On the other hand, the AZ91-Y and AZ91-Nd alloys showed improved fracture toughness, since deformation and fracture paths proceeded into grains rather than to grain boundaries, as the planar slip bands and twinnings actively developed inside the grains. These findings suggested, on the basis of the well-developed planar slip bands and twinnings, that the small addition of Y or Nd was very effective in improving fracture toughness.
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页码:1221 / 1235
页数:14
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