孟惠民, 吴继勋, 刘群先, 卢燕平, 张普强. 高速电镀锌-镍合金[J]. 工程科学学报, 1996, 18(5): 473-476,481. DOI: 10.13374/j.issn1001-053x.1996.05.017
引用本文: 孟惠民, 吴继勋, 刘群先, 卢燕平, 张普强. 高速电镀锌-镍合金[J]. 工程科学学报, 1996, 18(5): 473-476,481. DOI: 10.13374/j.issn1001-053x.1996.05.017
Meng Huimin, Wu Jixun, Liu Qunxian, Lu Yanping, Zhang Puqiang. High Speed Zn-Ni Alloy Electroplating[J]. Chinese Journal of Engineering, 1996, 18(5): 473-476,481. DOI: 10.13374/j.issn1001-053x.1996.05.017
Citation: Meng Huimin, Wu Jixun, Liu Qunxian, Lu Yanping, Zhang Puqiang. High Speed Zn-Ni Alloy Electroplating[J]. Chinese Journal of Engineering, 1996, 18(5): 473-476,481. DOI: 10.13374/j.issn1001-053x.1996.05.017

高速电镀锌-镍合金

High Speed Zn-Ni Alloy Electroplating

  • 摘要: 采用高速电镀实验装置强制电解液湍流运动,在高电流密度下,对简单硫酸盐体系中Zn-Ni合金电沉积规律进行了研究,证明Zn-Ni共沉积为异常共沉积,镀液中NI/Ni+Zn比及电流密度增加,镀层镍含量上升;镀液流速增加,镍含量下降。确定了高速电镀该合金工艺。

     

    Abstract: The electrolyte was compelled to form turbulent flow by using speed electroplating apparatus. The Zn-Ni alloy electro-deposition law in simple sulphate system under high current density was studied. The results indicated that Zn-Ni alloy electroplating is abnormal co-deposition. The content of nickel in the deposite increases with the increase of the ratio of Ni/Ni+Zn and the current density. It decreases with the increase of the fluid speed of electrolyte. On the above basis, the technology of high speed Zn-Ni alloy electroplating has been determined.

     

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