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Electrodeposition of nanocrystalline Zn-Ni coatings with single gamma phase from an alkaline bath

机译:碱性浴中单γ相电沉积纳米Zn-Ni纳米晶涂层

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摘要

Nanocrystalline Zn-Ni (grain size about 26 nm) alloy coatings were electrodeposited on carbon steel substrates in alkaline bath with 5,5'-dimethylhydantoin (DMH) as the complexing agent. The coatings with 13 wt.%-16 wt.% Ni content and the electrolyte with high current efficiency (>85%) were achieved at the optimized parameters, i.e., Ni2+/(Zn2+ + Ni2+) ratio 0.32, current density 2 A.dm(-2), temperature 50 degrees C and agitation speed 1000 rpm. The electrochemical behavior of the bath has been studied by cyclic voltammetry (CV), chronopotentiometry (CE) and cathodic polarization. Results show that the deposition of Zn-Ni alloys occurs at moderate overpotential and the rotation speed and bath temperature have a strong effect on cathodic polarization curves. The effects of Ni2+/(Zn2+ + Ni2+) ratio, current density, temperature and agitation speed on Ni content and cathode current efficiency were investigated. Studies indicate that the phase structure, grain size, microhardness and corrosion resistance of deposits are directly dependent on Ni content in deposits. The phase structure of deposits changes from a mixture eta-phase and gamma-phase to single gamma-phase with (411) plane orientation. Furthermore, the grain size decreases with the increase of Zn content in deposits and the increase in current density can also lead to the decrease in grain size. The increase in microhardness of deposits is strongly affected by the increase of Ni content in deposits rather than the Hall-Fetch relationship. Zn-Ni alloy coatings with about 13 wt.% Ni content present best corrosion resistance and the bath has a good stability. (C) 2015 Elsevier B.V. All rights reserved.
机译:在碱性浴中,以5,5'-二甲基乙内酰脲(DMH)作为络合剂,将纳米晶状的Zn-Ni(晶粒尺寸约为26 nm)合金涂层电沉积在碳钢基底上。在优化参数即Ni2 + /(Zn2 + + Ni2 +)比0.32,电流密度2 A的优化参数下,获得了具有13wt%-16wt%Ni含量的涂层和高电流效率(> 85%)的电解质。 dm(-2),温度为50摄氏度,搅拌速度为1000 rpm。已通过循环伏安法(CV),计时电位法(CE)和阴极极化研究了镀液的电化学行为。结果表明,Zn-Ni合金的沉积在中等电位下发生,并且转速和熔池温度对阴极极化曲线有很大的影响。研究了Ni2 + /(Zn2 + + Ni2 +)比,电流密度,温度和搅拌速度对Ni含量和阴极电流效率的影响。研究表明,沉积物的相结构,晶粒尺寸,显微硬度和耐蚀性直接取决于沉积物中镍的含量。沉积物的相结构从混合的η相和γ相变为具有(411)平面取向的单一γ相。此外,随着沉积物中锌含量的增加,晶粒尺寸减小,电流密度的增加也可导致晶粒尺寸减小。镀层中显微硬度的增加受到镀层中镍含量的增加的强烈影响,而不是霍尔-提取关系。镍含量约为13%(重量)的Zn-Ni合金涂层具有最佳的耐腐蚀性,镀液具有良好的稳定性。 (C)2015 Elsevier B.V.保留所有权利。

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