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Zinc and zinc alloy composite coatings for corrosion protection and wear resistance

机译:锌和锌合金复合涂层,具有防腐蚀和耐磨性

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摘要

Zinc and its alloys are among the most widely utilised metallic coatings for the sacrificial protection of steel. Although excellent in this mode of protection, these coatings are often less durable when subjected to environments of combined wear and corrosion due to their intrinsic relative softness and ductility. A possible and fast growing way of improving the durability of these coating is by the codeposition of inert particles into the zinc and zinc-alloy matrix. The main aim of this research was therefore to improve the durability of zinc and zinc-nickel coatings by the incorporation of inert particles via electrolytic codeposition methods. The first five chapters of this thesis comprise literature review on the electrodeposition of zinc, its alloys and composite electrodeposition in general. A major part of which was dedicated to the review of various conventional methods and parameters such as current density, agitation, temperature, solution composition, bath additives and pH usually investigated in electrodeposition. The experimental work was principally based on DC electrodeposition and was aimed at understanding the deposition behaviour of zinc and zinc-nickel electrodeposition baths, conditions which influence them and solution compatibility to the introduction of silica particles. A systematic study on the deposition behaviour of both zinc/silica and zinc-nickel/silica composite baths was carried out with particular interest on the rate of particle incorporation and the influence of particles on zinc-nickel alloy deposition. The complimentary codeposition behaviour of the nickel and silica particles was observed. The influence of bath additives such as N,N Dimethyldodecylamine (NND) and sodium nitrate on the rate of silica incorporation was also studied. Both additives were found to improve the rate of particle incorporation for the zinc/silica. The morphologies and compositions of the coatings were analysed with the use of SEM and FEGSEM. Corrosion performance studies were carried out in a neutral salt spray chamber and linear polarisation resistance methods used to determine barrier corrosion properties of the coatings. Anodic polarisation studies were also carried out. The results show an improvement in the corrosion performance of these coatings with the addition of silica particles Reciprocating wear tests were used to determine the wear behaviour of the coatings in terms of weight loss. Improvement in wear resistance was not observed in the zinc/silica coatings probably due to the high content of silica in the coatings. Lower silica contents may be required for the desired improvements. However, there were obvious improvements in the wear behaviour of the zinc-nickel/silica coatings due to the presence of the silica particles.
机译:锌及其合金是用于钢的牺牲保护的最广泛使用的金属涂层。尽管在这种保护模式下表现出色,但由于其固有的相对柔软性和延展性,这些涂层在遭受磨损和腐蚀相结合的环境时通常耐久性较差。改善这些涂层耐久性的一种可能且快速增长的方法是将惰性颗粒共沉积到锌和锌合金基体中。因此,这项研究的主要目的是通过通过电解共沉积方法掺入惰性颗粒来提高锌和锌镍镀层的耐久性。本文的前五章包括有关锌,锌合金和复合电沉积的文献综述。其中大部分致力于审查各种常规方法和参数,例如电流密度,搅拌,温度,溶液组成,浴液添加剂和通常在电沉积中研究的pH值。实验工作主要基于直流电沉积,旨在了解锌和锌镍电沉积浴的沉积行为,影响它们的条件以及与引入二氧化硅颗粒的溶液相容性。对锌/二氧化硅和锌-镍/二氧化硅复合浴的沉积行为进行了系统的研究,特别关注颗粒的掺入速率和颗粒对锌-镍合金沉积的影响。观察到镍和二氧化硅颗粒的互补共沉积行为。还研究了N,N二甲基十二烷基胺(NND)和硝酸钠等浴添加剂对二氧化硅掺入速率的影响。发现两种添加剂都可以提高锌/二氧化硅的颗粒结合率。使用SEM和FEGSEM分析涂层的形态和组成。腐蚀性能研究是在中性盐雾室中进行的,采用线性抗极化方法确定涂层的阻挡腐蚀性能。还进行了阳极极化研究。结果表明,通过添加二氧化硅颗粒,这些涂层的腐蚀性能得到了改善。往复式磨损试验用于确定涂层的失重(按重量计)。在锌/二氧化硅涂层中未观察到耐磨性的改善,这可能是由于涂层中二氧化硅的含量高。为了期望的改进,可能需要较低的二氧化硅含量。但是,由于二氧化硅颗粒的存在,锌镍/二氧化硅涂层的磨损性能有了明显改善。

著录项

  • 作者

    Tuaweri Johnnie T;

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  • 年度 2005
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  • 原文格式 PDF
  • 正文语种 English
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