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Corrosion resistance of zinc-magnesium coated steel

机译:锌镁涂层钢的耐腐蚀性

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A significant body of work exists in the literature concerning the corrosion behaviour of zinc-magnesium coated steel (ZMG), describing its enhanced corrosion resistance when compared to conventional zinc-coated steel. This paper begins with a review of the literature and identifies key themes in the reported mechanisms for the attractive properties of this material. This is followed by an experimental programme where ZMG was subjected to an automotive laboratory corrosion test using acidified NaCl solution. A 3-fold increase in time to red rust compared to conventional zinc coatings was measured. X-ray diffraction, X-ray photoelectron spectroscopy and scanning electron microscopy were used to characterize the corrosion products formed. The corrosion products detected on ZMG included simonkolleite (Zn_5Cl_2(OH)_8 • H_2O), possibly modified by magnesium uptake, magnesium hydroxide (Mg(OH)_2) and a hydroxy carbonate species. It is proposed that the oxygen reduction activity at the (zinc) cathodes is reduced by precipitation of alkali-resistant Mg(OH)_2, which is gradually converted to more soluble hydroxy carbonates by uptake of atmospheric carbon dioxide. This lowers the surface pH sufficiently to allow thermodynamically for general precipitation of insoluble simonkolleite over the corroding surface thereby retarding the overall corrosion reactions, leaving only small traces of magnesium corrosion products behind. Such a mechanism is consistent with the experimental findings reported in the literature.
机译:关于锌镁涂层钢(ZMG)的腐蚀行为的文献存在大量工作,描述了与常规锌涂层钢相比其增强的耐腐蚀性。本文首先回顾了文献,并确定了所报告机制中该材料具有吸引力的特性中的关键主题。接下来是一个实验程序,其中ZMG使用酸化的NaCl溶液进行了汽车实验室腐蚀测试。与传统的锌涂层相比,测得的红锈时间增加了3倍。 X射线衍射,X射线光电子能谱和扫描电子显微镜被用来表征形成的腐蚀产物。在ZMG上检测到的腐蚀产物包括可能被镁吸收,氢氧化镁(Mg(OH)_2)和羟基碳酸盐物质改性的新锰锌矿(Zn_5Cl_2(OH)_8•H_2O)。提出(锌)阴极上的氧还原活性通过耐碱的Mg(OH)_2的沉淀而降低,该Mg(OH)_2通过吸收大气中的二氧化碳逐渐转化为更可溶的羟基碳酸盐。这样可以充分降低表面的pH值,从而可以在热力学上使不溶性次硅铝矾石在腐蚀表面上普遍沉淀,从而阻碍了整体腐蚀反应,仅留下少量的镁腐蚀产物。这种机制与文献报道的实验结果一致。

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