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Corrosion and chemical behavior of Mg97Zn1Y2-1wt.%SiC under different corrosion solutions
作者姓名:Di-qing Wan  Yan-dan Xue  Jia-jun Hu  Hou-bin Wang  Wei Liu
作者单位:School of Materials Science and Engineering, East China Jiaotong University, Nanchang, 330013, China
基金项目:Financially supported by the National Natural Science Foundation of China (51665012);the Jiangxi Province Science Foundation for Outstanding Scholarship (20171BCB23061,2018ACB21020);the Primary Research & Development Plan of Jiangxi Province (20192BBEL50019)。
摘    要:To explore the corrosion properties of magnesium alloys, the chemical behavior of a high strength Mg97Zn1Y2-1 wt.%Si C alloy in different corrosion environments was studied. Three solutions of 0.2 mol·L-1 NaCl, Na2SO4 and NaNO3 were selected as corrosion solutions. The microstructures, corrosion rate, corrosion potential, and mechanism were investigated qualitatively and quantitatively by optical microscopy(OM), scanning electron microscopy(SEM), immersion testing experiment, and electrochemical test. Microstructure observation shows that the Mg97 Zn1Y2-1 wt.%Si C alloy is composed of α-Mg matrix, LPSO(Mg12 ZnY) phase and Si C phase. The hydrogen evolution and electrochemical test results reflect that the Mg97Zn1Y2-1 wt.%SiC in 0.2 mol·L-1 Na Cl solution has the fastest corrosion rate, followed by Na2SO4 and NaNO3 solutions, and that the charge-transfer resistance presents the contrary trend and decreases in turn.

关 键 词:Mg97Zn1Y2-1wt.%Si  C  corrosion  rate  corrosion  morphology  corrosion  mechanism
收稿时间:2020-04-22

Corrosion and chemical behavior of Mg97Zn1Y2-1wt.%SiC under different corrosion solutions
Di-qing Wan,Yan-dan Xue,Jia-jun Hu,Hou-bin Wang,Wei Liu.Corrosion and chemical behavior of Mg97Zn1Y2-1wt.%SiC under different corrosion solutions[J].China Foundry,2021,18(1):68-74.
Authors:Wan  Di-qing  Xue  Yan-dan  Hu  Jia-jun  Wang  Hou-bin  Liu  Wei
Affiliation:School of Materials Science and Engineering, East China Jiaotong University, Nanchang, 330013, China
Abstract:

To explore the corrosion properties of magnesium alloys, the chemical behavior of a high strength Mg97Zn1Y2-1wt.%SiC alloy in different corrosion environments was studied. Three solutions of 0.2 mol·L?1 NaCl, Na2SO4 and NaNO3 were selected as corrosion solutions. The microstructures, corrosion rate, corrosion potential, and mechanism were investigated qualitatively and quantitatively by optical microscopy (OM), scanning electron microscopy (SEM), immersion testing experiment, and electrochemical test. Microstructure observation shows that the Mg97Zn1Y2-1wt.%SiC alloy is composed of α-Mg matrix, LPSO (Mg12ZnY) phase and SiC phase. The hydrogen evolution and electrochemical test results reflect that the Mg97Zn1Y2-1wt.%SiC in 0.2 mol·L?1 NaCl solution has the fastest corrosion rate, followed by Na2SO4 and NaNO3 solutions, and that the charge-transfer resistance presents the contrary trend and decreases in turn.

Keywords:Mg97Zn1Y2-1wt  %SiC  corrosion rate  corrosion morphology  corrosion mechanism  
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