腐蚀
合金
材料科学
冶金
6111铝合金
5005铝合金
极化(电化学)
电流密度
阳极
电极
量子力学
物理
物理化学
化学
作者
Beiyi Ma,Hongyang Zhao,Dongying Ju,Zhibo Yang,Ming Chen,Qian Liu
出处
期刊:Materials
[Multidisciplinary Digital Publishing Institute]
日期:2023-02-26
卷期号:16 (5): 1939-1939
被引量:6
摘要
This study mainly attempts to develop Mg-based alloy materials with excellent corrosion resistance by means of multi-principal alloying. The alloy elements are determined based on the multi-principal alloy elements and the performance requirements of the components of biomaterials. Mg30Zn30Sn30Sr5Bi5 alloy was successfully prepared by vacuum magnetic levitation melting. Through the electrochemical corrosion test with m-SBF solution (pH7.4) as the electrolyte, the corrosion rate of alloy Mg30Zn30Sn30Sr5Bi5 alloy decreased to 20% of pure Mg. It could also be seen from the polarization curve that when the self-corrosion current density is low, the alloy shows superior corrosion resistance. Nevertheless, with the increase in self-corrosion current density, although the anodic corrosion performance of the alloy is obviously better than that of pure Mg, the cathode shows the opposite situation. The Nyquist diagram shows that the self-corrosion potential of the alloy is much higher than that of pure Mg. In general, under the condition of low self-corrosion current density, the alloy materials display excellent corrosion resistance. It is proved that the multi-principal alloying method is of positive significance for improving the corrosion resistance of Mg alloys.
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