Materials Science and Engineering

Achieving high strength and antibacterial Zn-4Ag-Mn alloy with homogenous corrosion behavior via high-pressure solid solution

  • 牛堃宁,张德闯,齐福刚,林建国,戴翌龙
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  • 1. School of Materials Science and Engineering, Xiangtan University, Xiangtan 411105, China;
    2. Key laboratory of Low Dimensional Materials and Application Technology of Ministry of Education, Xiangtan University, Xiangtan 411105, China

Online published: 2025-11-04

Abstract

Zn-4Ag-Mn alloy was successfully prepared by high-pressure solid solution (HPS) method to achieve high strength and antibacterial implant materials which can degrade uniformly. Microstructural characterization showed that HPS treatment on Zn-4Ag-Mn alloy resulted in 57.9% grain refinement, and the average size of the second phases was reduced to 10.2 μm compared with as-cast (AC) alloy. The compression, Vickers hardness and wear and friction tests showed particularly high mechanical properties of HPS alloys, including a compressive yield strength of 333.5 MPa and a Vickers hardness of Hv 89.5. Electrochemical corrosion, and immersion corrosion tests showed that HPS treatment optimized the corrosion resistance of the alloy with homogenous corrosion. Furthermore. The HPS-treated Zn-4Ag-Mn alloy exhibited excellent antibacterial properties through antibacterial testing, with an antibacterial rate of 71.6%. These results suggest that the HPS-treated Zn-4Ag-Mn alloy can be considered as a promising biodegradable implant material.

Cite this article

牛堃宁,张德闯,齐福刚,林建国,戴翌龙 . Achieving high strength and antibacterial Zn-4Ag-Mn alloy with homogenous corrosion behavior via high-pressure solid solution[J]. Transactions of Nonferrous Metals Society of China, 2024 , 34(7) : 2231 -2244 . DOI: 10.1016/S1003-6326(24)66537-4

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