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Structural, Micromechanical and Tribological Characterization of Zn-Ni Coatings: Effect of Sulfate Bath Composition

机译:Zn-Ni涂层的结构,微机械和摩擦学特征:硫酸盐浴组合物的影响

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摘要

Zn and Zn-Ni alloy coatings were electrodeposited on mild steel from sulfate-based bath containing Sn as additive. The effect of Ni content on the microstructure, morphology, microhardness and the tribological behavior of these coatings were studied and discussed. Adding Sn in the sulfate bath had a significant effect on the surface morphology, particularly on the Zn-8 wt% Ni coatings. By increasing the Ni concentration from 8 to 14 wt%, the X-ray patterns showed that the phase structure of Zn-Ni alloy coatings was changed from eta-phase Ni3Zn22 to gamma-phase Ni5Zn21. The plastic deformation and delamination were found to be wear mechanisms for the investigated coatings. While the Zn-14 wt% Ni alloys had the best wear resistance, Zn films had the most severe wear volume loss and the highest friction coefficient.
机译:Zn和Zn-Ni合金涂层在温和的钢中电沉积,含有Sn的硫酸盐基浴作为添加剂。 研究Ni含量对这些涂料的微观结构,形态,微硬度和摩擦学行为的影响。 在硫酸盐浴中加入Sn对表面形态具有显着影响,特别是在Zn-8wt%Ni涂层上。 通过将Ni浓度增加到8至14wt%,X射线图案表明,Zn-Ni合金涂层的相结构从ETA相Ni3zN22改变为γ-相Ni5Zn21。 发现塑料变形和分层是研究的磨损机构。 虽然Zn-14wt%Ni合金具有最佳的耐磨性,但Zn薄膜具有最严重的磨损体积损失和最高的摩擦系数。

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