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超硬鋁合金作為陰極在鋅電積過程中的電化學行為

Electrochemical behavior of the super high strength aluminum alloy as a cathode in zinc electrodeposition

  • 摘要: 選取商業純鋁和超硬鋁作為鋅電積陰極,在ZnSO4-H2SO4體系中通過電化學測試研究兩種陰極的電化學行為,同時利用掃描電鏡觀察鋁合金上電積鋅初期形核,X射線衍射分析鋅片結晶取向.研究結果表明:500 A·m-2電流密度下純鋁陰極的析出電位和交換電流密度分別為-1.541 V和7.74×10-11 A·cm-2,超硬鋁陰極分別為-1.496 V和6.07×10-3 A·cm-2.合金元素的添加會增加初期形核位置,提高形核速率,而形核速率的提高在一定程度上抑制鹵族元素對陰極的腐蝕.沉積3 h后,鋅片結晶取向沒有發生變化.超硬鋁易發生燒板和鼓泡,電流效率低,只有84.54%;純鋁電流效率達到88.04%,且沉積鋅平整、光滑,但陰極板容易被鹵族元素腐蝕.

     

    Abstract: The characteristics of commercial pure aluminum and a super high strength aluminum alloy as cathodes in zinc electrodeposition were studied in this paper.In a ZnSO4-H2SO4 system,the electrochemical behavior of the two cathodes was investigated by electrochemical test,the initial nucleation was observed by scanning electron microscopy,and the crystalline orientations of zinc sheets were observed by X-ray energy dispersive spectrometry.The results show that under a current density of 500 A·m-2,the deposition potential and exchange current density of the commercial pure aluminum and super high strength aluminum alloy are -1.541 V,7.74×10-11 A·cm-2 and -1.496 V,6.07×10-3 A·cm-2,respectively.The addition of alloying elements can increase the initial nucleation sites and promote the rate of nucleation,but the increase of nucleation rate can inhibit cathode corrosion by halogen elements.There is no change in the crystalline orientations of zinc sheets after deposition for 3 h.The super high strength aluminum alloy is prone to burn the plate and blister,with a lower current efficiency of only 84.54%.The current efficiency of the pure aluminum is 88.04%,the morphology of deposited zinc is flat and smooth,but the cathode plate is easy to be corroded by halogen elements.

     

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