欢迎登录材料期刊网

材料期刊网

高级检索

Al基体上电镀Ni-Cr合金可以大幅度改善其防护性能,为此以铝为基体,以柠檬酸为配位体,在三价铬的硫酸盐-氯化物镀液中电沉积了光亮平滑、质量优良、与基体结合良好、Cr含量为1.4%~26.0%、厚度为10~30μm、最大电流效率可达58.0%的Ni-Cr合金镀层.研究了电流密度、温度、pH值、CrCl3浓度等参数对电流效率和镀层厚度的影响.电位滴定显示,镀液的缓冲能力良好;阴极极化曲线表明,Ni-Cr合金的电沉积符合Tafel方程.SEM形貌观察发现,Ni-Cr合金表面布满了均匀密集的球形小颗粒;通过XRD检测确定,Ni-Cr合金为晶体结构,Cr含量升高使晶粒变小;Ni-Cr镀层的耐蚀性较好,Cr含量的升高有利于耐蚀性的提高.

参考文献

[1] Wang DQ;Shi ZY;Kou TS .Composite plating of hard chromium on aluminum substrate[J].Surface & Coatings Technology,2005(2/3):324-329.
[2] Wang F.;Watanabe T. .Preparation and characterization of the electrodeposited Fe-Cr alloy film[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2003(1/2):183-190.
[3] M. Bojinov;G. Fabricius;P. Kinnunen;T. Laitinen;K. Makela;T. Saario;G. Sundholm .The mechanism of transpassive dissolution of Ni-Cr alloys in sulphate solutions[J].Electrochimica Acta,2000(17):2791-2802.
[4] Bojinov M;Fabricius G;Kinnunen P .Electrochemical study of the passive behaviour of Ni-Cr alloys in a borate solution-a mixed-condution model approach[J].Journal of Electroanalytical Chemistry,2001,504:29-44.
[5] 张丕俭;邹立壮;王晓玲 .电沉积Ni-Cr合金工艺[J].材料保护,1997,30(03):16-18.
[6] 陈磊;龚竹青;黄志杰 .电沉积镍铬合金[J].电镀与涂饰,1998,17(04):4-6.
[7] 冯绍彬,冯丽婷,商士波.三价铬体系电镀铬-镍合金工艺[J].材料保护,2004(05):24-25.
[8] 李国斌,彭荣华,马淞江.电沉积Ni-Cr合金工艺研究[J].材料保护,2004(11):22-23,53.
[9] 马洪芳,刘志宝,殷风玲.铝合金电镀工艺研究[J].腐蚀与防护,2003(04):162-163.
[10] Dolati AG.;Ghorbani M.;Afshar A. .The electrodeposition of quaternary Fe-Cr-Ni-Mo alloys from the chloride-complexing agents electrolyte. Part I. Processing[J].Surface & Coatings Technology,2003(2/3):105-110.
[11] 邓姝皓,龚竹青,易丹青,苏玉长.三价铬还原电沉积机理[J].中南大学学报(自然科学版),2005(02):213-218.
[12] Song Y B;Chin D T .Current efficiency and polarization behaviour of trivalent chromium electrodeposition process[J].Electrochimica Acta,2002,48:349-356.
[13] Cheung C;Djuanda F;Erb U et al.Electrodeposition of nanocrystalline Ni-Fe alloys[J].Nano-Structured Materials,1995,5(05):513-523.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%