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Electroplating of Copper on Low Carbon Steel from Alkaline Citrate Complex Baths

机译:碱性柠檬酸盐络合物浴中低碳钢铜电镀

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摘要

The use of alkaline electroplating baths is the essential requirement to deposit Cu directly onto steels because of non-adherent Cu formation by replacement reaction between Cu~(2+) and Fe in acidic solution. For the development of such an electroplating bath, complexing agents to form soluble Cu complex in alkaline pH is necessary at first. Secondary, the soluble Cu complex must be reduced electrochemically. Cyanide-based baths meet these requirements, but the bath is toxic. In this study, the survey of complexing agents revealed that citric and tartaric acids form soluble copper complex solutions in alkaline pH, and electroplating is possible. The cathodic current density range to obtain smooth and adhesive electroplating with citrate complexed bath was extensive than that with a tartrate bath. It was found that 0.1 mol dm~(-3) CuSO_4 - 0.5 mol dm~(-3) citric acid baths with pH of 9-11 are optimum to obtain adhesive and uniform Cu layer. Copper electroplating with an acidic CuSO_4-H_2SO_4 bath was possible on 1 μm Cu layer with the alkaline citrate bath. Because the plating rate is high with the acidic bath, the multilayer Cu electroplating from the citrate bath and then an acidic sulfate bath gives a reasonable way for Cu coating onto steels. Elongation test of the steel sheet electroplated with the multilayer Cu showed that detachment of the Cu layer was limited in the vicinity of the broken part of the sheet. It is concluded that the toxic cyanide Cu plating bath can be replaced with a citrate bath.
机译:碱性电镀浴的使用是由于在酸性溶液中Cu〜(2+)和Fe之间的替代反应而直接将Cu直接沉积在钢上。为了开发这种电镀浴,首先需要在碱性pH中形成可溶性Cu复合物的络合剂。二次,必须电化学减少可溶性Cu复合物。氰化物的浴室满足这些要求,但浴室有毒。在这项研究中,络合剂的调查显示柠檬酸和酒石酸在碱性pH中形成可溶性铜络合物溶液,并且电镀是可能的。将阴极电流密度范围与柠檬酸络合物浴加工的光滑和粘合剂电镀,比用酒石浴更广泛。发现0.1mol DM〜(-3)CusO_4 - 0.5mol DM〜(-3)pH为9-11的柠檬酸浴是最佳的,得到粘合剂和均匀的Cu层。用碱性柠檬酸盐浴1μMCu层,可以用酸性CuSO_4-H_2SO_4浴电镀铜。因为镀锌速率与酸性浴高,所以从柠檬酸盐浴电镀的多层Cu电镀,然后酸性硫酸盐浴为Cu涂层提供合理的方式。用多层Cu电镀的钢板的伸长率试验显示Cu层的分离在片材的断裂部分附近。结论是,有毒氰化铜镀浴可以用柠檬酸浴代替。

著录项

  • 来源
    《ISIJ international》 |2020年第9期|2031-2037|共7页
  • 作者单位

    Division of Materials Science and Engineering Graduate School of Engineering Muroran Institute of Technology 27-1 Mizumoto Muroran-shi 050-8585 Japan;

    Department of Materials Science and Engineering Muroran Institute of Technology 27-1 Mizumoto Muroran-shi 050-8585 Japan;

    Division of Materials Science and Engineering Graduate School of Engineering Muroran Institute of Technology 27-1 Mizumoto Muroran-shi 050-8585 Japan;

    Division of Materials Science and Engineering Graduate School of Engineering Muroran Institute of Technology 27-1 Mizumoto Muroran-shi 050-8585 Japan;

    School of Advanced Science and Engineering Waseda University 3-4-1 Okubo Shinjuku-ku Tokyo 169-8555 Japan Research Center for Structural Materials National Institute for Materials Science 1-2-1 Sengen Tsukuba-shi 305-0047 Japan;

    School of Advanced Science and Engineering Waseda University 3-4-1 Okubo Shinjuku-ku Tokyo 169-8555 Japan Research Center for Structural Materials National Institute for Materials Science 1-2-1 Sengen Tsukuba-shi 305-0047 Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cu electroplating; complex bath; steel sheet;

    机译:CU电镀;复合浴;钢板;

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