The corrosion characteristics and mechanism of directionally solidified Mg-3Zn-xCa alloys

被引:0
|
作者
Yi Zhang [1 ,2 ]
Xiaohui Feng [1 ]
Qiuyan Huang [1 ]
Yingju Li [1 ]
Xuehui Hao [3 ]
Changzheng Wang [3 ]
Yuansheng Yang [1 ,2 ,3 ]
机构
[1] Institute of Metal Research, Chinese Academy of Sciences
[2] School of Materials Science and Engineering, University of Science and Technology of China
[3] School of Materials Science and Engineering, Liaocheng University
基金
中国国家自然科学基金;
关键词
D O I
暂无
中图分类号
TG146.22 []; TG172 [各种类型的金属腐蚀];
学科分类号
080502 ; 080503 ;
摘要
An investigation into the corrosion characteristics and mechanism of directionally solidified(DSed) Mg-3Zn-xCa(x = 0, 0.2, 0.5,0.8 wt.%) alloys in 0.9 wt.% Na Cl solution is presented. The DSed microstructure consists of columnar dendrites and eutectics distributed in the interdendritic region. The primary dendritic arm spacing(PDAS) and the volume fraction(fv) of the secondary phases are under the significant impact of the content of Ca. The corrosion rates evaluated using electrochemical measurements and immersion tests are accelerated monotonously with the increase of Ca content in DSed alloys. The corrosion resistance of the DSed alloys is significantly affected by the corrosion products film(CPF) and the secondary phases. The corrosion products of DSed Mg-3Zn alloy contain Mg(OH)2and ZnO. The existence of ZnO greatly enhances the corrosion resistance of DSed Mg-3Zn alloy. As for the DSed alloys containing Ca content, a relatively protective CPF without deep pits can form on the surface of DSed Mg-3Zn-0.2Ca specimen during the corrosion. The fvof the secondary phases dominates the corrosion rate of the DSed Mg-Zn-Ca alloys. The corrosion of DSed Mg-3Zn-xCa alloys initiates as a result of microgalvanic coupling between the cathodes of secondary phases and α-Mg matrix anode. Then, the corrosion gradually extends longitudinally with the breakdown of CPF.
引用
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页码:3673 / 3687
页数:15
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