Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
11026600 | Materials Letters | 2019 | 10 Pages |
Abstract
In this study, hot extruded pure Zn and Zn-0.02Mg-0.02Cu alloy were prepared. Compared with the pure Zn, the tensile yield strength, ultimate tensile strength and hardness of the Zn-based alloy were significantly improved, reaching 216.29â¯Â±â¯3.27â¯MPa, 262.25â¯Â±â¯5.02â¯MPa and 74.40â¯Â±â¯1.84â¯HV, respectively, satisfying the criteria of biodegradable stents. Electrochemical corrosion and immersion test showed that the corrosion rates of the Zn-based alloy were higher than those of pure Zn. In addition, the Zn-based alloy exhibited excellent biocompatibility for the development of zebrafish embryos and in vivo subcutaneous tissue without severe inflammatory response. These results indicate that the novel Zn-based alloy has a huge potential in cardiovascular stents.
Keywords
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Physical Sciences and Engineering
Materials Science
Nanotechnology
Authors
Song Lin, Qilong Wang, Xinhao Yan, Xiaolin Ran, Linping Wang, Jack G. Zhou, Tingzhang Hu, Guixue Wang,