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AZ31镁合金在Al(NO33溶液中的电化学行为和放电性能

Electrochemical Behavior and Discharge Performance of AZ31 Magnesium Alloy in Al(NO33 Solution

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【作者】 夏邢燕张娅孙颖迪周学华陈秋荣张腾飞

【Author】 XIA Xingyan;ZHANG Ya;SUN Yingdi;ZHOU Xuehua;CHEN Qiurong;ZHANG Tengfei;Shanghai Institute of Microsystem and Information Technology of Chinese Academy of Sciences;University of Chinese Academy of Sciences;Jiaxing Light Alloy Engineering Technology Centers of Chinese Academy of Sciences;Shanghai Huafeng Material Technology Institute;

【机构】 中国科学院上海微系统与信息技术研究所中国科学院大学中国科学院嘉兴轻合金技术工程中心上海华峰新材料研发科技有限公司

【摘要】 通过对腐蚀析氢行为、开路电位、动电位极化曲线、交流阻抗谱和恒流放电性能等的测试与分析,研究了AZ31镁合金在不同浓度Al(NO33溶液中的电化学行为和放电性能。结果表明:随着Al(NO33溶液浓度的增大,AZ31镁合金的开路电位和自腐蚀电位负移,交流阻抗值减小,放电活性增强;与镁盐电解液相比,AZ31镁合金在0.6mol·L-1 Al(NO33溶液中的恒流放电电压较高、放电曲线平稳、放电效率高、放电容量大;放电过程中AZ31镁合金电极表面生成2Mg(OH)2·Al(OH)3,促进Mg(OH)2从电极表面脱落,有利于电解液与电极表面充分接触,使AZ31镁合金电极具有较高的放电活性与放电稳定性。

【Abstract】 The electrochemical behavior and discharge performance of AZ31 magnesium alloy in different concentration of Al(NO33 solution were investigated by the testing and analysis of hydrogen evolution,open circuit potential,potentiodynamic polarization curve,alternating current impedance and constant-current discharge performance.The results indicate that with the increase of concentration of Al(NO33 solution,the open circuit potential and the free corrosion potential shifted negatively,the alternating current impedance decreased and the electrochemical activity enhanced.Compared with magnesium salt solutions,AZ31 magnesium alloy had higher constant current discharge voltage,more stable discharge curve,higher discharge efficiency and larger discharge capacity in 0.6 mol·L-1 Al(NO33 solution.2 Mg(OH)2·Al(OH)3 was generated on the surface of the AZ31 magnesium alloy electrode in the progress of discharge which promoted the Mg(OH)2 to fall off from electrode surface easily and helped the electrolyte contact with the electrode surface.The AZ31 magnesium alloy electrode had high discharge activity and discharge stability.

  • 【文献出处】 机械工程材料 ,Materials for Mechanical Engineering , 编辑部邮箱 ,2017年11期
  • 【分类号】TG146.22
  • 【被引频次】6
  • 【下载频次】162
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