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Influence of additives on microstructure, mechanical and tribological properties of nanocrystalline Zn-Ni coatings in a novel alkaline bath

机译:添加剂对新型碱浴中纳米晶Zn-Ni涂层的组织,力学和摩擦学性能的影响

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The effects of additives on the microstructure, mechanical and tribological behaviors of nanocrystalline Zn-Ni alloys were investigated in a new alkaline bath with 5,5'-dimethylhydantoin (DMH) as the complexing agent. Results show that Ni content in deposits decreases with the increase of additives. Ni content of coatings has a significant effect on the surface morphology, roughness, phase structure and grain size of Zn-Ni coatings. The grain size and roughness of deposits decrease with the decrease of Ni content in deposits. Furthermore, a new phase gamma-NiZn3 along (1300) plane becomes obvious and gamma-Ni5Zn21 (411) plane is inhibited by decreasing Ni content from 14.08 wt% to 10.57 wt%. It is observed that mirror-like bright Zn-Ni alloys with excellent wear resistance are obtained with the addition of additives. The bright Zn-Ni coatings exhibit a much lower and more stable value of the friction coefficient. The wear rate of bright Zn-Ni alloys is about 7.95% of that of dull Zn-Ni alloys. The wear resistance of deposits is enhanced with the decrease of hardness, indicating that the improvement of wear resistance does not fit the Archard's law but it is strongly associated with the surface properties and grain size of Zn-Ni alloys. The wear mechanisms of dull and bright Zn-Ni alloys both belong to adhesive, abrasive and oxidative wears. However, it transfers from a severe wear to a slight wear with the addition of additives due to the self-lubricating effect of bright Zn-Ni alloys. Therefore, the addition of the introduced additives is a simple but effective way to improve the wear resistance of Zn-Ni coatings. The excellent friction-reduction effect and better anti-wear performance are obtained in bright nanocrystalline Zn-Ni alloys.
机译:在以5,5'-二甲基乙内酰脲(DMH)为络合剂的新型碱浴中研究了添加剂对纳米晶Zn-Ni合金的微观结构,力学和摩擦学行为的影响。结果表明,沉积物中的镍含量随着添加剂的增加而降低。镀层中的镍含量对Zn-Ni镀层的表面形貌,粗糙度,相结构和晶粒尺寸有重要影响。沉积物的晶粒尺寸和粗糙度随着沉积物中镍含量的减少而减小。此外,沿着(1300)面的新相γ-NiZn3变得明显,并且通过将Ni含量从14.08wt%降低到10.57wt%而抑制了γ-Ni5Zn21(411)面。观察到,通过添加添加剂,获得了具有优异耐磨性的镜面状亮锌-镍合金。光亮的Zn-Ni涂层的摩擦系数值低得多且更稳定。光亮的Zn-Ni合金的磨损率约为钝态的Zn-Ni合金的磨损率的7.95%。镀层的耐磨性随硬度的降低而增强,这表明耐磨性的提高不符合阿卡德定律,但与锌-镍合金的表面性能和晶粒尺寸密切相关。钝态和光亮Zn-Ni合金的磨损机理均属于粘着,磨蚀和氧化磨损。但是,由于光亮的Zn-Ni合金的自润滑作用,在添加添加剂的情况下,它会从严重磨损转变为轻微磨损。因此,添加引入的添加剂是改善Zn-Ni涂层耐磨性的简单但有效的方法。在光亮的纳米晶Zn-Ni合金中获得了优异的减摩效果和更好的抗磨性能。

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