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Investigation of Formation Process of the Chrome-free Passivation Film of Electrodeposited Zinc 被引量:4
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作者 ZHU Li-qun YANG Fei HUANG Hui-jie 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2007年第2期129-133,共5页
The feasibility was investigated to substitute chrome-free passivation treatment of electrodeposited zinc in a titanium bath for chromate passivation treatment. The formation mechanism of the chrome-free passivation f... The feasibility was investigated to substitute chrome-free passivation treatment of electrodeposited zinc in a titanium bath for chromate passivation treatment. The formation mechanism of the chrome-free passivation film was further analyzed. The surface mor- phologies and the elemental compositions of the treated samples with varied immersion times were observed by scanning electron mi- croscopy (SEM) and determined by energy dispersion spectrometry (EDS), respectively. The electrode potential of the sample surface was recorded in the film formation process. The changes of the electrode potential are in accordance with that of SEM and EDS of the sample surface. The results of X-ray photoelectron spectroscopy (XPS) show the chrome-free passivation film composed ofZnO, SiO2, TiO2, Zn4Si207(OH)2, and SrF2. The anode zinc dissolution and the local pH value increase due to the cathode hydrogen ion reduction process result in the formation of the chrome-free passivation film. The macro-images of the chrome-free passivation films formed on electrodeposited zinc show that the color of the film changes from blue to iridescence with the increase of the immersion times. 展开更多
关键词 electrodeposited zinc chrome-free pasivation film film formation process
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F^-和Cl^-浓度对电沉积锌电化学过程的影响 被引量:2
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作者 朱军 高首坤 +3 位作者 赵奇 唐长斌 周甜甜 崔东亮 《材料保护》 CAS CSCD 北大核心 2018年第1期28-30,116,共4页
目前,对电积锌过程中F^-、Cl^-的电化学过程研究较少。基于电化学原理,对含F^-、Cl^-的锌电解液体系电积锌时的极化曲线、循环伏安曲线、交流阻抗谱进行了测定。结果表明:电解液中存在F^-、Cl^-时,表现出去极化作用,Cl^-会使还原电位和... 目前,对电积锌过程中F^-、Cl^-的电化学过程研究较少。基于电化学原理,对含F^-、Cl^-的锌电解液体系电积锌时的极化曲线、循环伏安曲线、交流阻抗谱进行了测定。结果表明:电解液中存在F^-、Cl^-时,表现出去极化作用,Cl^-会使还原电位和氧化电位升高,F^-会抑制还原产物的析出,沉积过程中不伴随气体析出现象,且随着F^-、Cl^-浓度的增大,锌沉积越来越困难。 展开更多
关键词 电积锌 硫酸锌电解液 电化学过程 F^ Cl^-
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