Microstructure And Mechanical Behavior Of Mg-0.5si-Xsn Alloys

ARCHIVES OF FOUNDRY ENGINEERING(2017)

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摘要
Mg-0.5Si-xSn (x=0.95, 2.9, 5.02wt.%) alloys were cast and extruded at 593K (320 degrees C) with an extrusion ratio of 25. The microstructure and mechanical properties of as-cast and extruded test alloys were investigated by OM, SEM, XRD and tensile tests. The experimental results indicate that the microstructure of the Mg-0.5Si-xSn alloys consists of primary alpha-Mg dendrites and an interdendritic eutectic containing alpha-Mg, Mg2Si and Mg2Sn. There is no coarse primary Mg2Si phase in the test alloys due to low Si content. With the increase in the Sn content, the Mg2Si phase was refined. The shape of Mg2Si phase was changed from branch to short bar, and the size of them were reduced. The ultimate tensile strength and yield strength of Mg-0.52Si-2.9Sn alloy at the temperature of 473K (200 degrees C) reach 133MPa and 112MPa respectively. Refined eutecticMg2Si phase and dispersed Mg2Sn phase with good elevated temperature stability are beneficial to improve the elevated temperature performance of the alloys. However, with the excess addition of Sn, large block-like Mg2Sn appears around the grain boundary leading to lower mechanical properties.
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关键词
Low-silicon magnesium alloy, Eutectic Mg2Si, Microstructure, Mechanical behavior
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