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Discharge Property and Voltage Delay of AZ31B Mg Alloy in Mg(NO3)2/Mg(ClO4)2 Composite Electrolyte |
Lin CHEN1,2( ), Furong ZHONG1, Jinlong ZAN1 |
1.College of Materials Science and Engineering, Sichuan University of Science & Engineering, Zigong 643000, China; 2.Material Corrosion and Protection Key Laboratory of Sichuan Province, Sichuan University of Science & Engineering, Zigong 643000, China; |
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Abstract In neutral and acidic solution, Mg reacts with water and release hydrogen, which reduces the utilization rate of electrode and brings difficulties to the assembly of the battery. In the alkaline solution, the Mg-surface would form a dense protective film, which make the electrode passivation and prevents discharging. In order to develop proper Mg-alloy suitable for battery electrolytes, the discharge properties and voltage delay of AZ31B Mg-alloy in compound electrolytes with different volume ratio of Mg(NO3)2 to Mg(ClO4)2 were studied by means of chronopotentiometry and electrochemical impedance spectroscopy and the corrosion products-films formed on the surface of AZ31B Mg-alloy were examined by means of SEM and infra-red spectrometer. Results show that in solutions with volume ratios of Mg(NO3)2 to Mg(ClO4)2 are 72:28 and 74:26 respectively, the discharge curves of AZ31B Mg-alloy are smooth and steady with stable potentials about -1.24 V (2.5 and 6 mA·cm-2) and the delay time 5~8 s. Chemical groups of the corrosion products-film after discharge is the same as before. However, the surface film of corrosion products has been destroyed by discharge process, resulting in continuous beads-like corrosion pits, therewith the film resistance would disappear and the charge transfer resistance decreases to 375 Ω·cm2.
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Received: 25 March 2017
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Fund: Supported by Talent Introduction Project of Sichuan University of Science & Engineering (2015CR58) |
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