4.6 Article

Effect of Zn and Cu Addition on Mechanical Properties of As-Extruded Mg-3Sn-1Ca Alloy

期刊

MATERIALS
卷 15, 期 13, 页码 -

出版社

MDPI
DOI: 10.3390/ma15134438

关键词

Mg-3Sn-1Ca alloy; extrusion; Mg2Cu phase; texture; mechanical properties

资金

  1. Key project of Education of Department of Liaoning Province [LJKZ1171]
  2. China Postdoctoral Fund [2020M680978]
  3. Liaoning province doctor start fund project [2020-BS-260]

向作者/读者索取更多资源

The effects of Zn and Cu addition on the microstructure and mechanical properties of the Mg-3Sn-1Ca alloy were studied. It was found that the addition of Zn and Cu significantly improved the mechanical properties of the alloy. The Mg-3Sn-1Ca-1Zn-1Cu alloy demonstrated the best comprehensive mechanical properties, with increased UTS and E-L values. However, the presence of a large amount of Mg2Cu phase in the Mg-3Sn-1Ca-1Cu alloy resulted in lower ductility compared to the Mg-3Sn-1Ca-1Zn alloy.
The effects of Zn and Cu addition on the microstructure and mechanical properties of the extruded Mg-3Sn-1Ca alloy were systematically studied. The effects of the grain size, texture, type and distribution of the second phase on the mechanical properties of the alloy were analyzed. The mechanical test results show that the addition of Zn and Cu elements can significantly improve the mechanical properties of the alloy. The as-extruded Mg-3Sn-1Ca-1Zn-1Cu alloy has the best comprehensive mechanical properties, and the UTS, YS and E-L are 244 MPa, 159 MPa and 13.4%, respectively. Compared with the Mg-3Sn-1Ca alloy, the UTS and E-L of the Mg-3Sn-1Ca-1Zn alloy are increased by 50 MPa and 132%, respectively. However, the UTS of the TXC311 alloy is increased by 55 MPa, but the ductility of the Mg-3Sn-1Ca-1Cu alloy is far less than that of the Mg-3Sn-1Ca-1Zn alloy, which is mainly attributed to the presence of a large amount of hard and brittle Mg2Cu phase in the alloy. Interestingly, the addition of Zn to Mg-3Sn-1Ca-1Cu alloy can improve the elongation of the alloy, which is due to the solid solution strengthening caused by the Zn element and the formation of small MgZnCu phase with Zn element and the consumption of Mg2Cu phase.

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