Investigating the corrosion behavior of as‐cast Mg‐Zn‐Ca alloys with the same Zn/Ca atomic ratio by in situ observation

Author:

Tian Ye1,Shao Yixuan1,Yu Qianqian1,Guo Shilei1,Dang Ruofei1,Du Yiming1,Zhu Guanhong1,Lyu Shaoyuan1ORCID,Chen Minfang23

Affiliation:

1. School of Materials Science and Engineering Tianjin University of Technology Tianjin China

2. Key Laboratory of Display Materials and Photoelectric Device (Ministry of Education) Tianjin China

3. National Demonstration Center for Experimental Function Materials Education Tianjin China

Abstract

AbstractThe alloying contents with the same Zn/Ca atomic ratio of 0.13 on the corrosion behavior of Mg‐Zn‐Ca (ZX) alloys were investigated. The second phases in ZX10, ZX20, ZX30, and ZX51 alloys were identical with a majority of Mg2Ca and very few Ca2Mg6Zn3 and their distribution changed from isolated to continuous state in ZX30 and ZX51. ZX10 had the lowest corrosion rate of 0.55 mm/year after 168 h immersion in simulated body fluid solution due to the smallest number of sites of galvanic corrosion. The corrosion rate of ZX30 alloy was the highest (0.72 mm/year), while though ZX51 alloy had the most Mg2Ca, its corrosion rate was reduced to 0.69 mm/year, resulting from the small size and thin Mg2Ca. In situ microstructure observation demonstrated the high fraction Mg2Ca phase and continuous Mg2Ca with bulky size were the main reason for the fast corrosion rate.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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