首页> 外文期刊>International journal of corrosion >Influence of Hot-Dip Galvanised Coating Morphology on the Adhesion of Organic Coatings Depending on the Zinc Bath Pb Content and the Postgalvanising Cooling Method
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Influence of Hot-Dip Galvanised Coating Morphology on the Adhesion of Organic Coatings Depending on the Zinc Bath Pb Content and the Postgalvanising Cooling Method

机译:取决于锌浴中铅含量和后镀锌冷却方法的热浸镀锌层形态对有机镀层附着力的影响

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摘要

Hot-dip galvanised coatings used either alone or with an organic coating (duplex system) constitute an effective anticorrosion protection. Adhesion between the coating and the zinc substrate plays a vital role in the durability of the duplex system. Conditions of the galvanising process and alloying additives incorporated into the zinc bath influence mechanical and protective properties as well as thickness, structure, and surface morphology of the zinc coatings. The influence of the surface morphology of zinc coatings on the adhesion of organic coatings was studied. The tests were carried out on zinc coatings produced in baths with varying Pb content and by employing various cooling methods after the galvanising process. It was noted that a rapid cooling in water produces zinc coatings with a fine-grain structure, more suitable for paint application compared to the air-cooled ones, with a spangle.
机译:单独使用或与有机涂料(双体系)一起使用的热浸镀锌涂料可构成有效的防腐保护。涂层和锌基材之间的粘合力对双相体系的耐久性起着至关重要的作用。镀锌工艺的条件和掺入锌浴中的合金添加剂会影响锌涂层的机械和保护性能以及厚度,结构和表面形态。研究了锌涂层的表面形态对有机涂层附着力的影响。测试是在镀锌工艺后,在具有不同Pb含量的镀液中生产的锌涂层上进行的,并通过采用各种冷却方法进行的。值得注意的是,在水中快速冷却会产生具有细晶粒结构的锌涂层,与风冷的锌涂层相比,该涂层具有亮点,因此更适用于油漆应用。

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  • 来源
    《International journal of corrosion》 |2018年第2018期|2102086.1-2102086.8|共8页
  • 作者单位

    Institute for Engineering of Polymer Material and Dyes, Paint and Plastics Department, 44-100 Gliwice, Chorzowska 50A, Poland;

    Institute for Engineering of Polymer Material and Dyes, Paint and Plastics Department, 44-100 Gliwice, Chorzowska 50A, Poland;

    Silesian University of Technology, Faculty of Materials Engineering and Metallurgy, Institute of Materials Science, 44-019 Katowice, Krasinskiego 8, Poland;

    Silesian University of Technology, Faculty of Materials Engineering and Metallurgy, Institute of Materials Science, 44-019 Katowice, Krasinskiego 8, Poland;

    Silesian University of Technology, Faculty of Materials Engineering and Metallurgy, Institute of Materials Science, 44-019 Katowice, Krasinskiego 8, Poland;

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